Commits

Flávio Coelho committed f4cf1ff

Implemented saving reference files in gridfs instead of filesystem;
Used md5 sum as id for the files in gridfs to avoi storing the same files moer than once;
Added identification of mimetype;
Added cookie and proxy specification to the request returned by the second yield of the parse function;

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  • Parent commits ce757de

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Files changed (6)

File .idea/workspace.xml

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+      <change type="MODIFICATION" beforePath="$PROJECT_DIR$/scholar/scholar/spiders/scholar.google.com.br" afterPath="$PROJECT_DIR$/scholar/scholar/spiders/scholar.google.com.br" />
+      <change type="MODIFICATION" beforePath="$PROJECT_DIR$/.idea/workspace.xml" afterPath="$PROJECT_DIR$/.idea/workspace.xml" />
+      <change type="MODIFICATION" beforePath="$PROJECT_DIR$/scholar/scholar/items.py" afterPath="$PROJECT_DIR$/scholar/scholar/items.py" />
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+      <change type="MODIFICATION" beforePath="$PROJECT_DIR$/scholar/scholar/spiders/scholar_spyder.py" afterPath="$PROJECT_DIR$/scholar/scholar/spiders/scholar_spyder.py" />
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+        <option value="$PROJECT_DIR$/scholar/scholar/settings.py" />
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-      <pane id="Favorites" />
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+      <pane id="Favorites" />
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File scholar/scholar/items.py

     NumCited   = Field() # number of times the publication is cited
     Terms = Field()     # list of search terms used in the query
     Bibtex = Field() #Bibtex entry for this item
-    Filename = Field() # filename containing the article in pdf or html formats
+    Fileid = Field() # file id of the article stored in mongodb gridfs
+    Filename = Field() # file name in gridfs
+    Mimetype = Field() # Mimetype of the article file
 
 class PubmedItem(Item):
     """

File scholar/scholar/pipelines.py

 import urllib2
 from urllib2 import HTTPError
 from pymongo import Connection
+import gridfs
+import md5
 import settings
 
 class ScholarPipeline(object):
     def save_document(self, item):
-        download_dir = '/tmp/pdfs/'
+#        download_dir = '/tmp/pdfs/'
         if item['URL']:
             pdf_url = None;
             html_url = None
                 html_url = item['URL']
                 # Download the article
             timestamp = str(time())
-            #TODO: implement saving of files to gridfs
+            fid = None
             if pdf_url:
                 try:
                     f = urllib2.urlopen(pdf_url, timeout=15)
-                    item['Filename'] = timestamp + '.pdf'
-                    with open(download_dir + timestamp + '.pdf', 'w') as p:
-                        p.write(f.read())
+                    item['Filename'] = timestamp + '.pdf' if not item['Bibtex'] else item['Bibtex'].split(',')[0].split('{')[-1].strip() + '.pdf'
+                    item['Mimetype'] = 'application/pdf'
+                    fid = self.save_to_gridfs(f,item)
+#                    with open(download_dir + timestamp + '.pdf', 'w') as p:
+#                        p.write(f.read())
                 except HTTPError as error:
                     print "Download of file %s failed with %s" % (item['URL'], error)
             if html_url:
                 try:
                     f = urllib2.urlopen(html_url, timeout=15)
-                    item['Filename'] = timestamp + '.html'
-                    with open(download_dir + timestamp + '.html', 'w') as p:
-                        p.write(f.read())
+                    item['Filename'] = timestamp + '.html' if not item['Bibtex'] else item['Bibtex'].split(',')[0].split('{')[-1].strip()+ '.html'
+                    item['Mimetype'] = 'text/html'
+                    fid = self.save_to_gridfs(f,item)
+#                    with open(download_dir + timestamp + '.html', 'w') as p:
+#                        p.write(f.read())
                 except HTTPError as error:
                     print "Download of file %s failed with %s" % (item['URL'], error)
+            item['Fileid'] = fid
+        else:
+            item['Fileid'] = None
+            item['Filename'] = None
+            item['Mimetype'] = None
+
+    def save_to_gridfs(self,fobj,item):
+        """
+        Save reference file to gridfs.
+        md5 hash will be used as _id to avoid stroing of identical files
+        """
+        fs = gridfs.GridFS(self.db)
+        content = fobj.read()
+        h = md5.md5(content)
+        try:
+            fid = fs.put(data=content,_id=h.hexdigest(), filename=item['Filename'],contentType=item['Mimetype'])
+        except FileExists:
+            print "File %s has already been Processed, skipping."%fn
+            fid = None
+        except InvalidStringData as err:
+            print err,  item['Filename']
+            fid = None
+        return fid
 
     def process_item(self, item, spider):
         self.save_document(item)
         return item
-
+    def open_spider(self,spider):
+        self.db = Connection('127.0.0.1',27017)[settings.MONGO_DATABASE]
+        
 class MongoDBPipeline(object):
     """
     Saves the item to a mongoDB database and collection

File scholar/scholar/spiders/scholar.google.com.br

 
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id=gbw><div id=gbz><span class=gbtcb></span><ol class=gbtc><li class=gbt><a class=gbzt id=gb_119 href="https://plus.google.com/?hl=en&tab=sX" onclick="gbar.logger.il(1,{t:119})"><span class=gbtb2></span><span class=gbts>+You</span></a></li><li class=gbt><a onclick=gbar.qs(this) class=gbzt id=gb_1 href="http://www.google.com.br/search?num=100&hl=en&q=Dengue+model&sa=N&tab=sw" onclick="gbar.logger.il(1,{t:1})"><span class=gbtb2></span><span class=gbts>Web</span></a></li><li class=gbt><a onclick=gbar.qs(this) class=gbzt id=gb_2 href="http://www.google.com.br/search?num=100&hl=en&tbm=isch&source=og&q=Dengue+model&sa=N&tab=si" onclick="gbar.logger.il(1,{t:2})"><span class=gbtb2></span><span class=gbts>Images</span></a></li><li class=gbt><a onclick=gbar.qs(this) class=gbzt id=gb_12 href="http://www.google.com.br/search?num=100&hl=en&tbo=u&tbm=vid&source=og&q=Dengue+model&sa=N&tab=sv" onclick="gbar.logger.il(1,{t:12})"><span class=gbtb2></span><span class=gbts>Videos</span></a></li><li class=gbt><a onclick=gbar.qs(this) class=gbzt id=gb_8 href="http://maps.google.com.br/maps?num=100&hl=en&q=Dengue+model&sa=N&tab=sl" onclick="gbar.logger.il(1,{t:8})"><span class=gbtb2></span><span class=gbts>Maps</span></a></li><li class=gbt><a class=gbzt id=gb_33 href="http://www.orkut.com/Main?hl=en&tab=s0#UniversalSearch" onclick="gbar.logger.il(1,{t:33})"><span class=gbtb2></span><span class=gbts>Orkut</span></a></li><li class=gbt><a class=gbzt id=gb_23 href="https://mail.google.com/mail/?hl=en&tab=sm" onclick="gbar.logger.il(1,{t:23})"><span class=gbtb2></span><span class=gbts>Gmail</span></a></li><li class=gbt><a class=gbgt id=gbztm href="http://www.google.com.br/intl/en/options/" onclick="gbar.tg(event,this)" aria-haspopup=true aria-owns=gbd><span class=gbtb2></span><span id=gbztms class="gbts gbtsa"><span id=gbztms1>More</span><span class=gbma></span></span></a><div class=gbm id=gbd aria-owner=gbztm><div class=gbmc><ol class=gbmcc><li class=gbmtc><a onclick=gbar.qs(this) class=gbmt id=gb_51 href="http://translate.google.com.br/?num=100&hl=en&q=Dengue+model&sa=N&tab=sT" onclick="gbar.logger.il(1,{t:51})">Translate</a></li><li class=gbmtc><a onclick=gbar.qs(this) class=gbmt id=gb_10 href="http://www.google.com.br/search?num=100&hl=en&tbo=u&tbm=bks&source=og&q=Dengue+model&sa=N&tab=sp" onclick="gbar.logger.il(1,{t:10})">Books</a></li><li class=gbmtc><a class="gbmt gbp1 gbm0l" id=gb_9 href="http://scholar.google.com.br/schhp?hl=en&tab=ss" onclick="gbar.logger.il(1,{t:9})">Scholar</a></li><li class=gbmtc><a onclick=gbar.qs(this) class=gbmt id=gb_13 href="http://www.google.com.br/search?num=100&hl=en&tbo=u&tbm=blg&source=og&q=Dengue+model&sa=N&tab=sb" onclick="gbar.logger.il(1,{t:13})">Blogs</a></li><li class=gbmtc><div class="gbmt gbmh"></div></li><li class=gbmtc><a onclick=gbar.qs(this) class=gbmt id=gb_36 href="http://www.youtube.com/results?num=100&hl=en&q=Dengue+model&sa=N&tab=s1&gl=BR" onclick="gbar.logger.il(1,{t:36})">YouTube</a></li><li class=gbmtc><a class=gbmt id=gb_24 href="https://www.google.com/calendar?num=100&hl=en&q=Dengue+model&sa=N&tab=sc" onclick="gbar.logger.il(1,{t:24})">Calendar</a></li><li class=gbmtc><a onclick=gbar.qs(this) class=gbmt id=gb_31 href="http://picasaweb.google.com.br/lh/view?num=100&hl=en&q=Dengue+model&sa=N&tab=sq" onclick="gbar.logger.il(1,{t:31})">Photos</a></li><li class=gbmtc><a class=gbmt id=gb_25 href="https://docs.google.com/?hl=en&tab=so" onclick="gbar.logger.il(1,{t:25})">Documents</a></li><li class=gbmtc><a class=gbmt id=gb_38 href="https://sites.google.com/?hl=en&tab=s3" onclick="gbar.logger.il(1,{t:38})">Sites</a></li><li class=gbmtc><a onclick=gbar.qs(this) class=gbmt id=gb_3 href="http://groups.google.com.br/groups?num=100&hl=en&q=Dengue+model&sa=N&tab=sg" onclick="gbar.logger.il(1,{t:3})">Groups</a></li><li class=gbmtc><a class=gbmt id=gb_32 href="http://www.google.com.br/reader/view/?hl=en&tab=sy" onclick="gbar.logger.il(1,{t:32})">Reader</a></li><li class=gbmtc><div class="gbmt gbmh"></div></li><li class=gbmtc><a class=gbmt onclick="gbar.logger.il(1,{t:66})" href="http://www.google.com.br/intl/en/options/">Even more &raquo;</a></li></ol></div></div></li></ol></div><div id=gbg><h2 class=gbxx>Account Options</h2><span class=gbtcb></span><ol class=gbtc><li class=gbt><a href="https://www.google.com/accounts/ServiceLogin?hl=en&continue=http://scholar.google.com.br/scholar%3Fstart%3D200%26as_q%3DDengue%2Bmodel%26num%3D100%26as_epq%3D%26as_oq%3D%26as_eq%3D%26as_occt%3Dany%26as_sauthors%3D%26as_publication%3D%26as_ylo%3D%26as_yhi%3D%26as_sdt%3D1.%26as_sdtp%3Don%26as_sdtf%3D%26as_sdts%3D5%26btnG%3DSearch%2BScholar%26hl%3Den" onclick="gbar.logger.il(9,{l:'i'})" id=gb_70 class=gbgt><span class=gbtb2></span><span id=gbgs4 class=gbts><span id=gbi4s1>Sign in</span></span></a></li><li class="gbt gbtb"><span class=gbts></span></li><li class=gbt><a class=gbgt id=gbg5 href="http://www.google.com.br/preferences?hl=en" title="Options" onclick="gbar.tg(event,this)" 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-</script><form name=gs method=GET action="/scholar"><div id="scife_hdr"><div style="float: left; margin: 0;" width="194"><a href="/schhp?hl=en&amp;num=100&amp;as_sdt=0,5" target="_top"><img src="/intl/en/images/scholar_logo_md_2011.gif" width="194" height="40" alt="Scholar Home" border=0 vspace=2></a></div><div style="margin-left: 194px"><div style="margin-left: 10px"><table cellpadding=0 cellspacing=0 border=0 style="margin:1px 3px 1px 0px"><tr><td nowrap><input type=hidden name=hl value="en"><input type=hidden name=num value="100"><input type=text name=q size=41 maxlength=2048 value="Dengue model"><font size=-1> <input type=submit name="btnG" value="Search"></font></td><td>&nbsp;&nbsp;</td><td valign="top" nowrap><font size=-2><a href="/advanced_scholar_search?q=Dengue+model&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Advanced Scholar Search</a></font></td></tr></table></div></div></div><table width=100% border=0 cellpadding=0 cellspacing=0 bgcolor=#dcf6db><tr><td colspan=2 bgcolor=#008000><img width=1 height=1 alt=""></td></tr><tr><td bgcolor=#dcf6db nowrap><font size=+1> <b>Scholar</b></font>&nbsp; <select name="as_sdt" onChange="document.gs.submit()"><option value="0,5" selected>Articles and patents<option value="1,5">&nbsp;&nbsp;Articles excluding patents<option value="2,5">Legal opinions and journals<option value="2003">&nbsp;&nbsp;All federal courts<option value="4,5">&nbsp;&nbsp;California courts<option value="0,5!">  Advanced search&hellip;</select> <select name="as_ylo" onChange="document.gs.submit()"><option value="" selected>anytime<option value="2011">since 2011<option value="2010">since 2010<option value="2009">since 2009<option value="2008">since 2008<option value="2007">since 2007<option value="2006">since 2006<option value="2005">since 2005<option value="2004">since 2004<option value="2003">since 2003<option value="2002">since 2002<option value="2001">since 2001<option value="2000">since 2000<option value="1999">since 1999<option value="1998">since 1998<option value="1997">since 1997<option value="1996">since 1996<option value="1995">since 1995<option value="1994">since 1994<option value="1993">since 1993<option value="1992">since 1992</select> <select name="as_vis" onChange="document.gs.submit()"><option value="0" selected>include citations<option value="1">at least summaries</select>&nbsp;&nbsp;<a href="/scholar_alerts?view_op=create_alert_options&amp;hl=en&amp;alert_query=allintitle:+Dengue+model&amp;alert_params=hl%3Den%26as_sdt%3D0,5"><span class="SPRITE_scholar_envelope" style="vertical-align:text-top" title="Create email alert"> </span></a>&nbsp;<font size=-1><a href="/scholar_alerts?view_op=create_alert_options&amp;hl=en&amp;alert_query=allintitle:+Dengue+model&amp;alert_params=hl%3Den%26as_sdt%3D0,5">Create email alert</a></font></td><td bgcolor=#dcf6db align=right nowrap><font size=-1>Results <b>201</b> - <b>300</b> of about <b>33,100</b>.   (<b>0.63</b> sec)&nbsp;</font></td></tr></table></form>  <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0048969708011509" class=yC0>Higher temperature and urbanization affect the spatial patterns of <b>dengue </b>fever transmission in subtropical Taiwan</a></h3></div><span class="gs_ggs gs_fl"><a href="http://ntur.lib.ntu.edu.tw/bitstream/246246/173465/1/26.pdf" class=yC1><span class=gs_ctg2>[PDF]</span> from ntu.edu.tw</a></span><font size=-1><span class=gs_a>PC Wu, JG Lay, HR Guo, CY Lin&hellip; - Science of the Total  &hellip;, 2009 - Elsevier</span><br><b>...</b> The spatial distribution of urbanization (p = 0.020) and numbers of month with average<br>
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 temperature higher than 18 °C (p = 0.066) were consistently, positively associated with spatial<br>
 distribution of <b>dengue</b> incidence in spatial lag <b>model</b> with an increase of R 2 = 0.433, an <b>...</b> 
 <br><span class=gs_fl><a href="/scholar?cites=3967663716340647236&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 21</a> - <a href="/scholar?q=related:RMWw4CD5DzcJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=3967663716340647236&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 7 versions</a> - <a href="/scholar.bib?q=info:RMWw4CD5DzcJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=200">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.springerlink.com/index/G25W233222R10137.pdf" class=yC2>Inferring the timescale of <b>dengue </b>virus evolution under realistic models of DNA substitution</a></h3></div><span class="gs_ggs gs_fl">  <a href="http://openurl.ebscohost.com/linksvc/linking.aspx?custid=ns017328&amp;sid=google&amp;auinit=EJ&amp;aulast=Dunham&amp;atitle=Inferring+the+timescale+of+dengue+virus+evolution+under+realistic+models+of+DNA+substitution&amp;title=Journal+of+Molecular+Evolution&amp;volume=64&amp;issue=6&amp;date=2007&amp;spage=656&amp;issn=0022-2844" class=yC3>EBSCOhost Full Text</a></span><font size=-1><span class=gs_a>EJ Dunham&hellip; - Journal of Molecular Evolution, 2007 - Springer</span><br><b>...</b> 2000 years. Key words: <b>Dengue</b> virus — Covarion — Substi- tution <b>model</b> —<br>
 <br><span class=gs_fl><a href="/scholar?cites=18207202829456623724&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 63</a> - <a href="/scholar?q=related:bMg_64H6rPwJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://scholar.googleusercontent.com/scholar?q=cache:bMg_64H6rPwJ:scholar.google.com/+Dengue+model&amp;hl=en&amp;num=100&amp;as_sdt=0,5">View as HTML</a> - <a href="http://direct.bl.uk/research/17/1C/RN109641741.html?source=googlescholar" class=yCD2>BL Direct</a> - <a href="/scholar?cluster=18207202829456623724&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 2 versions</a> - <a href="/scholar.bib?q=info:bMg_64H6rPwJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=298">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0147957107000537" class=yCD3><b>Dengue </b>hemorrhagic fever with special emphasis on immunopathogenesis</a></h3></div><span class="gs_ggs gs_fl"><a href="http://tugas-pbw.comuf.com/penyakittropis/upload/D2.pdf" class=yCD4><span class=gs_ctg2>[PDF]</span> from comuf.com</a></span><font size=-1><span class=gs_a>I Kurane - Comparative immunology, microbiology and infectious  &hellip;, 2007 - Elsevier</span><br><b>...</b> Promising murine <b>model</b> was recently reported by Shresta et al. [29]. Mouse-adapted<br>
 <b>dengue</b> virus strains were used and the mice showed increased vascular permeability,<br>
 which is one of the characteristic clinical features in DHF patients. <b>...</b> 
-<br><span class=gs_fl><a href="/scholar?cites=1765554144326418947&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 54</a> - <a href="/scholar?q=related:A4JL1COCgBgJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=1765554144326418947&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:A4JL1COCgBgJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=299">Import into BibTeX</a></span></font>  </div>  <br><a href="/scholar_alerts?view_op=create_alert_options&amp;hl=en&amp;alert_query=allintitle:+Dengue+model&amp;alert_params=hl%3Den%26as_sdt%3D0,5"><span class="SPRITE_scholar_envelope" style="vertical-align:text-top" title="Create email alert"> </span></a>&nbsp;<a href="/scholar_alerts?view_op=create_alert_options&amp;hl=en&amp;alert_query=allintitle:+Dengue+model&amp;alert_params=hl%3Den%26as_sdt%3D0,5">Create email alert</a><br 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+(SEIR) <b>model</b> of <b>dengue</b> fever transmission that enables us to explore the behavior of an <br>
+epidemic, and to experiment with vector control practices. Populations of both host and <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=7152734881526772163&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 154</a> - <a href="/scholar?q=related:w_HyWXqeQ2MJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/46/5E/EN002456862.html?source=googlescholar" class=yC2>BL Direct</a> - <a href="/scholar?cluster=7152734881526772163&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:w_HyWXqeQ2MJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=0">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0140673602099646" class=yC3>Potential effect of population and climate changes on global distribution of <b>dengue </b>fever: an empirical <b>model</b></a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.cmdr.ubc.ca/trainingprogram/papers/journalpaper_June18b_04.pdf" class=yC4><span class=gs_ctg2>[PDF]</span> from ubc.ca</a>  <br><a href="http://openurl.ebscohost.com/linksvc/linking.aspx?custid=ns017328&amp;sid=google&amp;auinit=S&amp;aulast=Hales&amp;atitle=Potential+effect+of+population+and+climate+changes+on+global+distribution+of+dengue+fever:+an+empirical+model&amp;title=Lancet&amp;volume=360&amp;issue=9336&amp;date=2002&amp;spage=830&amp;issn=0099-5355" class=yC5>EBSCOhost Full Text</a></span><font size=-1><span class=gs_a>S Hales, N de Wet, J Maindonald&hellip; - The Lancet, 2002 - Elsevier</span><br>BACKGROUND: Existing theoretical models of the potential effects of climate change on <br>vector-borne diseases do not account for social factors such as population increase, or <br>interactions between climate variables. Our aim was to investigate the potential effects of <b> ...</b><br><span class=gs_fl><a href="/scholar?cites=6543196358972230332&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 287</a> - <a href="/scholar?q=related:vEor0GsazloJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=6543196358972230332&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 21 versions</a> - <a href="/scholar.bib?q=info:vEor0GsazloJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=1">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ajtmh.org/cgi/content/abstract/53/5/489" class=yC6>A simulation <b>model </b>of the epidemiology of urban <b>dengue </b>fever: literature analysis, <b>model </b>development, preliminary validation, and samples of simulation results</a></h3></div><span class="gs_ggs gs_fl"><a href="https://www.nescent.org/wg/selfishdna/images/e/e5/Focks_et_al._1995_DENSIM_a_detailed_model_of_dengue_epidemiology.pdf" class=yC7><span class=gs_ctg2>[PDF]</span> from nescent.org</a></span><font size=-1><span class=gs_a>DA Focks, E Daniels, DG Haile&hellip; - The American journal of  &hellip;, 1995 - ASTMH</span><br>Am. I. Trop. Med. Hyg.. 53(5), 1995, pp. 489—506 Copyright ©1995 by The American Society <br>
+of Tropical Medicine and Hygiene  <b> ...</b> A SIMULATION <b>MODEL</b> OF THE EPIDEMIOLOGY OF  <b> ...</b> <br>
+<b>MODEL</b> DEVELOPMENT, PRELIMINARY VALIDATION, AND SAMPLES OF <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=797697870357214849&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 208</a> - <a href="/scholar?q=related:gTa6mPz9EQsJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/5D/27/RN000264155.html?source=googlescholar" class=yC8>BL Direct</a> - <a href="/scholar?cluster=797697870357214849&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 5 versions</a> - <a href="/scholar.bib?q=info:gTa6mPz9EQsJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=2">Import into BibTeX</a></span></font>  </div>      <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0025556498100032" class=yC9>Analysis of a <b>dengue </b>disease transmission <b>model</b></a></h3></div><font size=-1><span class=gs_a>L Esteva&hellip; - Mathematical biosciences, 1998 - Elsevier</span><br>A <b>model </b>for the transmission of <b>dengue </b>fever in a constant human population and variable <br>vector population is discussed. A complete global analysis is given, which uses the results of <br>the theory of competitive systems and stability of periodic orbits, to establish the global <b> ...</b><br><span class=gs_fl><a href="/scholar?cites=914997723144403706&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 109</a> - <a href="/scholar?q=related:-jpQ0pS5sgwJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/1C/57/RN046248545.html?source=googlescholar" class=yCA>BL Direct</a> - <a href="/scholar?cluster=914997723144403706&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 5 versions</a> - <a href="/scholar.bib?q=info:-jpQ0pS5sgwJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=3">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.springerlink.com/index/9KTTNQ7Y4517QKX2.pdf" class=yCB>Competitive exclusion in a vector-host <b>model </b>for the <b>dengue </b>fever</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ird.fr/ur079/perso/bacaer/dengue_biblio/dengue_math_biol_35.pdf" class=yCC><span class=gs_ctg2>[PDF]</span> from ird.fr</a></span><font size=-1><span class=gs_a>Z Feng&hellip; - Journal of Mathematical Biology, 1997 - Springer</span><br>Abstract. We study a system of differential equations that models the population dynamics of <br>an SIR vector transmitted disease with two pathogen strains. This <b>model </b>arose from our <br>study of the population dynamics of <b>dengue </b>fever. The <b>dengue </b>virus presents four <b> ...</b><br><span class=gs_fl><a href="/scholar?cites=7965253991810791689&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 91</a> - <a href="/scholar?q=related:Cfmkx01Eim4J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/4F/1D/RN024154221.html?source=googlescholar" class=yCD>BL Direct</a> - <a href="/scholar?cluster=7965253991810791689&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 7 versions</a> - <a href="/scholar.bib?q=info:Cfmkx01Eim4J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=4">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://jvi.asm.org/cgi/content/abstract/73/1/783" class=yCE>New mouse <b>model </b>for <b>dengue </b>virus vaccine testing</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC103889/" class=yCF><span class=gs_ctg2>[HTML]</span> from nih.gov</a></span><font size=-1><span class=gs_a>AJ Johnson&hellip; - Journal of virology, 1999 - Am Soc Microbiol</span><br>Several <b>dengue</b> (DEN) virus vaccines are in development; however, the lack of a reliable small <br>
+animal <b>model</b> in which to test them is a major obstacle. Because evidence suggests that interferon <br>
+(IFN) is involved in the human anti-DEN virus response, we tested mice deficient in their <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=13827503866650691748&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 131</a> - <a href="/scholar?q=related:pAgOZoEp5b8J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/33/47/RN054415977.html?source=googlescholar" class=yC10>BL Direct</a> - <a href="/scholar?cluster=13827503866650691748&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:pAgOZoEp5b8J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=5">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0042682299998872" class=yC11>Development of a novel mouse <b>model </b>for <b>dengue </b>virus infection</a></h3></div><font size=-1><span class=gs_a>J An, J Kimura-Kuroda, Y Hirabayashi&hellip; - Virology, 1999 - Elsevier</span><br>In the present study, we established an animal <b>model </b>for <b>dengue </b>virus infection using <br>severe combined immunodeficient mice transplanted with a human hepatocarcinoma cell <br>line (HepG2). At 7–8 weeks after transplantation, the HepG2-grafted mice were infected <b> ...</b><br><span class=gs_fl><a href="/scholar?cites=15663646407980377056&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 93</a> - <a href="/scholar?q=related:4GP-ImtzYNkJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/14/15/RN069095951.html?source=googlescholar" class=yC12>BL Direct</a> - <a href="/scholar?cluster=15663646407980377056&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:4GP-ImtzYNkJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=6">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://jvi.asm.org/cgi/content/abstract/80/20/10208" class=yC13>Murine <b>model </b>for <b>dengue </b>virus-induced lethal disease with increased vascular permeability</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1617308/" class=yC14><span class=gs_ctg2>[HTML]</span> from nih.gov</a></span><font size=-1><span class=gs_a>S Shresta, KL Sharar, DM Prigozhin&hellip; - Journal of  &hellip;, 2006 - Am Soc Microbiol</span><br>Lack of an appropriate animal <b>model</b> for <b>dengue</b> virus (DEN), which causes <b>dengue</b> fever and <br>
+<b>dengue</b> hemorrhagic fever/<b>dengue</b> shock syndrome (DHF/DSS), has impeded characterization <br>
+of the mechanisms underlying the disease pathogenesis. The cardinal feature of <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=9405095045747054378&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 86</a> - <a href="/scholar?q=related:KheKIB2chYIJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/1D/60/RN195642288.html?source=googlescholar" class=yC15>BL Direct</a> - <a href="/scholar?cluster=9405095045747054378&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 9 versions</a> - <a href="/scholar.bib?q=info:KheKIB2chYIJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=7">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.springerlink.com/index/ARFRV6VE3BEV0A65.pdf" class=yC16>A <b>model </b>for <b>dengue </b>disease with variable human population</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.bondy.ird.fr/~bacaer/dengue_biblio/dengue_math_biol_38.pdf" class=yC17><span class=gs_ctg2>[PDF]</span> from ird.fr</a></span><font size=-1><span class=gs_a>L Esteva&hellip; - Journal of mathematical biology, 1999 - Springer</span><br>Abstract. A <b>model </b>for the transmission of <b>dengue </b>fever with variable human population size <br>is analyzed. We find three threshold parameters which govern the existence of the endemic <br>proportion equilibrium, the increase of the human population size, and the behaviour of <b> ...</b><br><span class=gs_fl><a href="/scholar?cites=190532774238342433&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 79</a> - <a href="/scholar?q=related:Ic2LdozopAIJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/0E/28/RN059006370.html?source=googlescholar" class=yC18>BL Direct</a> - <a href="/scholar?cluster=190532774238342433&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:Ic2LdozopAIJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=8">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://vir.sgmjournals.org/content/80/5/1167.short" class=yC19>Homology <b>model </b>of the <b>dengue </b>2 virus NS3 protease: putative interactions with both substrate and NS2B cofactor.</a></h3></div><span class="gs_ggs gs_fl"><a href="http://vir.sgmjournals.org/content/80/5/1167.full.pdf" class=yC1A><span class=gs_ctg2>[PDF]</span> from sgmjournals.org</a></span><font size=-1><span class=gs_a>RI Brinkworth, DP Fairlie&hellip; - Journal of general  &hellip;, 1999 - Soc General Microbiol</span><br>Journal of General Virology (1999), 80, 1167–1177. Printed in Great Britain ...............................<br>
+.......................................................................................................................................................<b> ...</b>  <b> ...</b> Homology <br>
+<b>model</b> of the <b>dengue</b> 2 virus NS3 protease:  <b> ...</b> Ross I. Brinkworth,1 David P. Fairlie,1 <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=5628445679465145239&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 65</a> - <a href="/scholar?q=related:lyMaUoZBHE4J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/26/05/RN060378071.html?source=googlescholar" class=yC1B>BL Direct</a> - <a href="/scholar?cluster=5628445679465145239&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:lyMaUoZBHE4J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=9">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0264410X0500441X" class=yC1C>An evaluation of <b>dengue </b>type-2 inactivated, recombinant subunit, and live-attenuated vaccine candidates in the rhesus macaque <b>model</b></a></h3></div><font size=-1><span class=gs_a>J Robert Putnak, BA Coller, G Voss, DW Vaughn&hellip; - Vaccine, 2005 - Elsevier</span><br>The safety, immunogenicity, and protective efficacy of two non-replicating antigen-based <br>vaccines and one live-attenuated virus (LAV) vaccine for <b>dengue </b>type-2 (<b>dengue</b>-2) virus <br>were evaluated in the rhesus macaque <b>model</b>. The non-replicating vaccines consisted of <b> ...</b><br><span class=gs_fl><a href="/scholar?cites=14536991990477931617&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 61</a> - <a href="/scholar?q=related:YcQi7zHFvckJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=14536991990477931617&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 3 versions</a> - <a href="/scholar.bib?q=info:YcQi7zHFvckJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=10">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ajtmh.org/cgi/content/abstract/52/5/468" class=yC1D>Evaluation of the severe combined immunodeficient (SCID) mouse as an animal <b>model </b>for <b>dengue </b>viral infection</a></h3></div><font size=-1><span class=gs_a>SJL Wu, CG Hayes, DR Dubois&hellip; - The American journal of  &hellip;, 1995 - ASTMH</span><br>Abstract. Severe combined immunodeficient (SCID) mice reconstituted with human peripheral <br>
+blood lymphocytes (hu-PBL) were evaluated as an animal <b>model</b> for demonstrating <b>dengue</b> <br>
+(DEN) viral infection. Reconstituted mice (hu-PBL-SCID) that demonstrated successful <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=604269933766106274&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 51</a> - <a href="/scholar?q=related:otyTnk3MYggJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/52/1F/EN027635969.html?source=googlescholar" class=yC1E>BL Direct</a> - <a href="/scholar?cluster=604269933766106274&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 5 versions</a> - <a href="/scholar.bib?q=info:otyTnk3MYggJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=11">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><span class=gs_ctc>[PDF]</span> <a href="http://www.biomedcentral.com/content/pdf/1475-925x-2-4.pdf" class=yC1F>A <b>model </b>of <b>dengue </b>fever</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.biomedcentral.com/content/pdf/1475-925x-2-4.pdf" class=yC20><span class=gs_ctg2>[PDF]</span> from biomedcentral.com</a></span><font size=-1><span class=gs_a>M Derouich, A Boutayeb&hellip; - BioMedical Engineering  &hellip;, 2003 - biomedcentral.com</span><br>Address: 1Department of Mathematics, Faculty of Sciences, Mohamed I university, Oujda-Morocco <br>
+and 2Department of Mathematical Sciences, Brunel University, Middx UB8 3PH England <br>
+Email: M Derouich - Derouich@sciences.univ-oujda.ac.ma; A Boutayeb* - boutayeb@<b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=338880234879310963&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 44</a> - <a href="/scholar?q=related:c9xhNcfxswQJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://scholar.googleusercontent.com/scholar?q=cache:c9xhNcfxswQJ:scholar.google.com/+Dengue++model&amp;hl=en&amp;num=100&amp;as_sdt=0,5">View as HTML</a> - <a href="/scholar?cluster=338880234879310963&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 16 versions</a> - <a href="/scholar.bib?q=info:c9xhNcfxswQJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=12">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://jid.oxfordjournals.org/content/195/5/665.short" class=yC21>A <b>dengue </b>fever viremia <b>model </b>in mice shows reduction in viral replication and suppression of the inflammatory response after treatment with antiviral drugs</a></h3></div><span class="gs_ggs gs_fl"><a href="http://jid.oxfordjournals.org/content/195/5/665.full" class=yC22><span class=gs_ctg2>[HTML]</span> from oxfordjournals.org</a></span><font size=-1><span class=gs_a>W Schul, W Liu, HY Xu, M Flamand&hellip; - Journal of Infectious  &hellip;, 2007 - jid.oxfordjournals.org</span><br><b>Dengue</b> fever is an emerging arboviral disease for which no vaccine or antiviral treatment exists <br>
+and that causes thousands of fatalities each year. To develop an in vivo test system for antidengue <br>
+drugs, AG129 mice, which are deficient for the interferon-α/β and -γ receptors, were <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=7382308103752308271&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 45</a> - <a href="/scholar?q=related:L9akchs6c2YJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/53/4E/RN204108687.html?source=googlescholar" class=yC23>BL Direct</a> - <a href="/scholar?cluster=7382308103752308271&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:L9akchs6c2YJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=13">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><span class=gs_ctc>[HTML]</span> <a href="http://www.scielo.br/scielo.php?pid=S0074-02762003000700002&amp;script=sci_arttext" class=yC24>Uncertainties regarding <b>dengue </b>modeling in Rio de Janeiro, Brazil</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.scielo.br/scielo.php?pid=S0074-02762003000700002&amp;script=sci_arttext" class=yC25><span class=gs_ctg2>[HTML]</span> from scielo.br</a></span><font size=-1><span class=gs_a>PM Luz, CT Codeço, E Massad&hellip; - Memórias do Instituto  &hellip;, 2003 - SciELO Brasil</span><br><b>...</b> In this work, we developed a simple <b>dengue</b> <b>model</b> to answer three questions: (i) which parameters<br>
+are worth pursuing in the field in order to develop a <b>dengue</b> transmission <b>model</b> for Brazilian<br>
+cities; (ii) how vector density spatial heterogeneity influences control efforts; (iii) with <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=2935262823379803656&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 51</a> - <a href="/scholar?q=related:CJ72dfwlvCgJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://scholar.googleusercontent.com/scholar?q=cache:CJ72dfwlvCgJ:scholar.google.com/+Dengue++model&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Cached</a> - <a href="http://direct.bl.uk/research/22/26/RN141331977.html?source=googlescholar" class=yC26>BL Direct</a> - <a href="/scholar?cluster=2935262823379803656&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 15 versions</a> - <a href="/scholar.bib?q=info:CJ72dfwlvCgJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=14">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.springerlink.com/index/97k81ph578281870.pdf" class=yC27>Automata network simulator applied to the epidemiology of urban <b>dengue </b>fever</a></h3></div><font size=-1><span class=gs_a>H Gagliardi, F da Silva&hellip; - Computational Science–ICCS 2006, 2006 - Springer</span><br><b>...</b> 2 The Epidemic Cellular Automata <b>Model</b> for <b>Dengue</b> In this section, we will focus our<br>
+discussion in the <b>Dengue</b> <b>model</b>, which is a human- vector iteration <b>model</b>. <b>...</b> Particularly, in<br>
+the Fig. 3 we can see very interesting characteristics of <b>Dengue</b> <b>model</b>. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=10209955849075140596&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 8</a> - <a href="/scholar?q=related:9KeLBMAMsY0J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/38/25/RN189734358.html?source=googlescholar" class=yC28>BL Direct</a> - <a href="/scholar?cluster=10209955849075140596&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 3 versions</a> - <a href="/scholar.bib?q=info:9KeLBMAMsY0J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=15">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://onlinelibrary.wiley.com/doi/10.1111/j.1574-695X.2001.tb01542.x/full" class=yC29>A <b>model </b>of the real‐time correlation of viral titers with immune reactions in antibody‐dependent enhancement of <b>dengue</b>‐2 infections</a></h3></div><font size=-1><span class=gs_a>RF Chen, WT Yeh, MY Yang&hellip; - FEMS Immunology &amp;  &hellip;, 2001 - Wiley Online Library</span><br>We simultaneously assessed <b>dengue</b>-2 virus (DEN-2) titers by real-time quantitative reverse <br>
+transcription-polymerase chain reaction (RT-PCR) and immune reactions including <br>
+interleukin-4 (IL-4), interferon-γ (IFN-γ) and prostaglandin E 2 (PGE 2 ) production by <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=8607378861834626469&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 45</a> - <a href="/scholar?q=related:peXbkniNc3cJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=8607378861834626469&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 5 versions</a> - <a href="/scholar.bib?q=info:peXbkniNc3cJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=16">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><span class=gs_ctc>[PDF]</span> <a href="http://summits.ncat.org/docs/patz_nature_2005.pdf" class=yC2A>Impact of regional climate change on human health</a></h3></div><span class="gs_ggs gs_fl"><a href="http://summits.ncat.org/docs/patz_nature_2005.pdf" class=yC2B><span class=gs_ctg2>[PDF]</span> from ncat.org</a></span><font size=-1><span class=gs_a>JA Patz, D Campbell-Lendrum, T Holloway&hellip; - Nature, 2005 - summits.ncat.org</span><br><b>...</b> For rela- tively small countries with presumably some climate uniformity, a climate-based<br>
+<b>dengue</b> <b>model</b> has been developed that strongly correlates with the inter-annual variability<br>
+in <b>dengue</b> cases reported at the national level (Fig. 1)32. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=9315755234282782728&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 545</a> - <a href="/scholar?q=related:CEDpUQc2SIEJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://scholar.googleusercontent.com/scholar?q=cache:CEDpUQc2SIEJ:scholar.google.com/+Dengue++model&amp;hl=en&amp;num=100&amp;as_sdt=0,5">View as HTML</a> - <a href="http://direct.bl.uk/research/34/03/RN192199874.html?source=googlescholar" class=yC2C>BL Direct</a> - <a href="/scholar?cluster=9315755234282782728&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 61 versions</a> - <a href="/scholar.bib?q=info:CEDpUQc2SIEJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=17">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0264410X03006868" class=yC2D>Cost-effectiveness of a pediatric <b>dengue </b>vaccine</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.pdvi.org/PDFs/articles/Shepard_CEA_Vaccine-article.pdf" class=yC2E><span class=gs_ctg2>[PDF]</span> from pdvi.org</a></span><font size=-1><span class=gs_a>DS Shepard, JA Suaya, SB Halstead, MB Nathan&hellip; - Vaccine, 2004 - Elsevier</span><br><b>...</b> Abstract. To ascertain the economic feasibility of a pediatric tetravalent <b>dengue</b> vaccine, we<br>
+developed and calibrated a cost-effectiveness <b>model</b> of vaccinating children at 15 months in<br>
+Southeast (SE) Asia using a societal perspective. <b>...</b> Fig. 1. Rates in <b>dengue</b> <b>model</b>. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=5814497370510494792&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 72</a> - <a href="/scholar?q=related:SIy4TI0-sVAJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=5814497370510494792&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:SIy4TI0-sVAJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=18">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://jvi.asm.org/cgi/content/abstract/81/11/5518" class=yC2F>Both virus and tumor necrosis factor alpha are critical for endothelium damage in a mouse <b>model </b>of <b>dengue </b>virus-induced hemorrhage</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1900309/" class=yC30><span class=gs_ctg2>[HTML]</span> from nih.gov</a></span><font size=-1><span class=gs_a>HC Chen, FM Hofman, JT Kung, YD Lin&hellip; - Journal of  &hellip;, 2007 - Am Soc Microbiol</span><br>Hemorrhage is a common clinical manifestation in <b>dengue</b> patients. However, the pathogenic <br>
+mechanism of <b>dengue</b> virus (DV)-induced hemorrhage awaits clarification. We established a <br>
+mouse <b>model</b> of DV hemorrhage using immunocompetent C57BL/6 mice by injecting DV <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=11385626683928404696&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 44</a> - <a href="/scholar?q=related:2OLCOCXfAZ4J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/35/0C/RN208841413.html?source=googlescholar" class=yC31>BL Direct</a> - <a href="/scholar?cluster=11385626683928404696&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 7 versions</a> - <a href="/scholar.bib?q=info:2OLCOCXfAZ4J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=19">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://jid.oxfordjournals.org/content/195/12/1808.short" class=yC32><b>Dengue </b>virus infects macrophages and dendritic cells in a mouse <b>model </b>of infection</a></h3></div><span class="gs_ggs gs_fl"><a href="http://jid.oxfordjournals.org/content/195/12/1808.full" class=yC33><span class=gs_ctg2>[HTML]</span> from oxfordjournals.org</a></span><font size=-1><span class=gs_a>JL Kyle, PR Beatty&hellip; - Journal of Infectious Diseases, 2007 - jid.oxfordjournals.org</span><br><b>Dengue</b> fever is a mosquitoborne viral illness caused by 4 <b>dengue</b> viruses (DENV-1–4). The <br>
+cellular tropism of DENV has not been definitively determined, despite its importance for understanding <br>
+viral pathogenesis and identifying therapeutic targets. To define DENV cellular tropism in <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=15823278877528222927&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 38</a> - <a href="/scholar?q=related:z-wCxU2Ul9sJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/4E/0B/RN210003720.html?source=googlescholar" class=yC34>BL Direct</a> - <a href="/scholar?cluster=15823278877528222927&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 4 versions</a> - <a href="/scholar.bib?q=info:z-wCxU2Ul9sJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=20">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2591712/" class=yC35>Observations related to pathogenesis of <b>dengue </b>hemorrhagic fever. V. Examination of agspecific sequential infection rates using a mathematical <b>model</b>.</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2591712/pdf/yjbm00177-0073.pdf" class=yC36><span class=gs_ctg2>[PDF]</span> from nih.gov</a></span><font size=-1><span class=gs_a>DB Fischer&hellip; - The Yale journal of biology and  &hellip;, 1970 - ncbi.nlm.nih.gov</span><br>Experimental studies of <b>dengue</b> infections in humans suggest that immunity to homologous virus <br>
+challenge is probably of lifelong duration.&#39; Individuals infected with one type of <b>dengue</b> virus <br>
+and then exposed to a second sero- type within 3-6 months may develop modified <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=5645363998262170796&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 34</a> - <a href="/scholar?q=related:rBQyYKVcWE4J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=5645363998262170796&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:rBQyYKVcWE4J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=21">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://jvi.asm.org/cgi/content/abstract/77/6/3655" class=yC37>Yellow fever virus/<b>dengue</b>-2 virus and yellow fever virus/<b>dengue</b>-4 virus chimeras: biological characterization, immunogenicity, and protection against <b>dengue </b> &hellip;</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC149507/" class=yC38><span class=gs_ctg2>[HTML]</span> from nih.gov</a></span><font size=-1><span class=gs_a>TJ Chambers, Y Liang, DA Droll&hellip; - Journal of  &hellip;, 2003 - Am Soc Microbiol</span><br>Two yellow fever virus (YFV)/<b>dengue</b> virus chimeras which encode the prM and E proteins of <br>
+either <b>dengue</b> virus serotype 2 (<b>dengue</b>-2 virus) or <b>dengue</b>-4 virus within the genome of the YFV <br>
+17D strain (YF5.2iv infectious clone) were constructed and characterized for their <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=13423951896771619463&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 37</a> - <a href="/scholar?q=related:h-oAgSB1S7oJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/34/48/RN127825038.html?source=googlescholar" class=yC39>BL Direct</a> - <a href="/scholar?cluster=13423951896771619463&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 9 versions</a> - <a href="/scholar.bib?q=info:h-oAgSB1S7oJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=22">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0166093497002115" class=yC3A>Endothelial cell monolayers as a <b>model </b>system to investigate <b>dengue </b>shock syndrome</a></h3></div><font size=-1><span class=gs_a>SM Bonner&hellip; - Journal of virological methods, 1998 - Elsevier</span><br>Monolayers of the human endothelial cell line ECV304 were compared with those from <br>primary endothelial cells from human umbilical cord veins (HUVEC) for potential use as an <br>assay system to investigate vasoactive mediator levels in <b>dengue </b>viral infections. <b> ...</b><br><span class=gs_fl><a href="/scholar?cites=7509743524752330608&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 32</a> - <a href="/scholar?q=related:cA8ni_L3N2gJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=7509743524752330608&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 5 versions</a> - <a href="/scholar.bib?q=info:cA8ni_L3N2gJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=23">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.pnas.org/content/100/12/6986.short" class=yC3B>A ligand-binding pocket in the <b>dengue </b>virus envelope glycoprotein</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.pnas.org/content/100/12/6986.long" class=yC3C><span class=gs_ctg2>[HTML]</span> from pnas.org</a></span><font size=-1><span class=gs_a>Y Modis, S Ogata, D Clements&hellip; - Proceedings of the  &hellip;, 2003 - National Acad Sciences</span><br><b>...</b> with CNS (23). The structure of <b>dengue</b> E without β-OG was also determined in<br>
+a second crystal form (dataset Native4) by molecular replacement using a <b>dengue</b><br>
+E monomer as the search <b>model</b> in AMORE (24). The space <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=2806579707068639627&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 378</a> - <a href="/scholar?q=related:i2mlqV_58iYJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/0F/00/RN132802300.html?source=googlescholar" class=yC3D>BL Direct</a> - <a href="/scholar?cluster=2806579707068639627&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 19 versions</a> - <a href="/scholar.bib?q=info:i2mlqV_58iYJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=24">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://onlinelibrary.wiley.com/doi/10.1111/j.1574-695X.2003.tb00646.x/full" class=yC3E>Anti‐TNF antibody treatment reduces mortality in experimental <b>dengue </b>virus infection</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.antibodysystems.com/dengue%20FEMS.pdf" class=yC3F><span class=gs_ctg2>[PDF]</span> from antibodysystems.com</a></span><font size=-1><span class=gs_a>A Atrasheuskaya, P Petzelbauer&hellip; - FEMS Immunology  &hellip;, 2003 - Wiley Online Library</span><br><b>...</b> Based on the pre-terminal TNF-α peak seen in our lethal <b>dengue</b> <b>model</b>, we tested<br>
+the effect of anti-TNF-α serum. <b>...</b> 16] Johnson, AJ, Roehrig, JT (1999) New mouse <b>model</b><br>
+for <b>Dengue</b> virus vaccine testing. J. Virol. 73, 783–786. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=7925907228386045598&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 56</a> - <a href="/scholar?q=related:nq6mhqF6_m0J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=7925907228386045598&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 7 versions</a> - <a href="/scholar.bib?q=info:nq6mhqF6_m0J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=25">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ncbi.nlm.nih.gov/pubmed/11700749" class=yC40>Use of a computer <b>model </b>to identify potential hotspots for <b>dengue </b>fever in New Zealand.</a></h3></div><font size=-1><span class=gs_a>N De Wet, W Ye, S Hales, R Warrick&hellip; - The New Zealand  &hellip;, 2001 - ncbi.nlm.nih.gov</span><br>AIMS: To describe the areas of potential <b>dengue</b> fever risk in New Zealand for present climatic <br>
+conditions and projected scenarios of climate change. METHODS: A computer <b>model</b>, the HOTSPOTS <br>
+System, was developed. This allowed the integration of climatic, topographical, <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=11728143526322517275&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 24</a> - <a href="/scholar?q=related:GzVAGWa8wqIJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/18/0F/RN102860512.html?source=googlescholar" class=yC41>BL Direct</a> - <a href="/scholar?cluster=11728143526322517275&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 4 versions</a> - <a href="/scholar.bib?q=info:GzVAGWa8wqIJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=26">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ajtmh.org/content/80/2/302.short" class=yC42>Evaluation of interferences between <b>dengue </b>vaccine serotypes in a monkey <b>model</b></a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ajtmh.org/cgi/content/full/80/2/302" class=yC43><span class=gs_ctg2>[HTML]</span> from ajtmh.org</a></span><font size=-1><span class=gs_a>B Guy, V Barban, N Mantel, M Aguirre&hellip; - The American journal of  &hellip;, 2009 - ASTMH</span><br>Interferences between different antigens in the same vaccine formulation have been reported <br>
+for some vaccines (eg, polio vaccines, live attenuated <b>dengue</b> vaccine candidates). We examined <br>
+interferences between the four serotypes of ChimeriVax <b>dengue</b> vaccines (CYDs) in a <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=4789834667615488399&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 36</a> - <a href="/scholar?q=related:j4kSqEDpeEIJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=4789834667615488399&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 4 versions</a> - <a href="/scholar.bib?q=info:j4kSqEDpeEIJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=27">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1533051/" class=yC44><b>Dengue </b>fever epidemic potential as projected by general circulation models of global climate change.</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1533051/pdf/envhper00526-0073.pdf" class=yC45><span class=gs_ctg2>[PDF]</span> from nih.gov</a>  <br><a href="http://openurl.ebscohost.com/linksvc/linking.aspx?custid=ns017328&amp;sid=google&amp;auinit=JA&amp;aulast=Patz&amp;atitle=Dengue+fever+epidemic+potential+as+projected+by+general+circulation+models+of+global+climate+change.&amp;title=Environmental+Health+Perspectives&amp;volume=106&amp;issue=3&amp;date=1998&amp;spage=147&amp;issn=1078-0475" class=yC46>EBSCOhost Full Text</a></span><font size=-1><span class=gs_a>JA Patz, WJ Martens, DA Focks&hellip; - Environmental Health  &hellip;, 1998 - ncbi.nlm.nih.gov</span><br><b>...</b> Environmental Health Perspectives * Volume 06, Number 3, March 1998 147 Page<br>
+2. Articles * Patz et al. <b>dengue</b> transmission simulation <b>model</b> (20). <b>...</b> <b>model</b> (CIMSiM)<br>
+coupled with the <b>dengue</b> transmission simulation <b>model</b> (DENSiM). <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=3725566618365184777&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 151</a> - <a href="/scholar?q=related:Ccu1uhnfszMJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/4E/30/RN042976751.html?source=googlescholar" class=yC47>BL Direct</a> - <a href="/scholar?cluster=3725566618365184777&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 29 versions</a> - <a href="/scholar.bib?q=info:Ccu1uhnfszMJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=28">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><span class=gs_ctc>[PDF]</span> <a href="http://cryoem.ucsd.edu/publication-pdfs/2003-ZhangW-NSB.pdf" class=yC48>Visualization of membrane protein domains by cryo-electron microscopy of <b>dengue </b>virus</a></h3></div><span class="gs_ggs gs_fl"><a href="http://cryoem.ucsd.edu/publication-pdfs/2003-ZhangW-NSB.pdf" class=yC49><span class=gs_ctg2>[PDF]</span> from ucsd.edu</a></span><font size=-1><span class=gs_a>W Zhang, PR Chipman, J Corver&hellip; - Nature structural  &hellip;, 2003 - cryoem.ucsd.edu</span><br><b>...</b> glycoprotein. The density outside the viral membrane was fit with the <b>dengue</b> dimer<br>
+homology <b>model</b> using the program EMfit22 a b Figure 1 The <b>dengue</b> virus structure.<br>
+(a) Stereo view of the viral surface at a resolution of 12.0 Å. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=15627809467489273321&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 165</a> - <a href="/scholar?q=related:6UUvN-kh4dgJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://scholar.googleusercontent.com/scholar?q=cache:6UUvN-kh4dgJ:scholar.google.com/+Dengue++model&amp;hl=en&amp;num=100&amp;as_sdt=0,5">View as HTML</a> - <a href="http://direct.bl.uk/research/54/54/RN140231720.html?source=googlescholar" class=yC4A>BL Direct</a> - <a href="/scholar?cluster=15627809467489273321&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 11 versions</a> - <a href="/scholar.bib?q=info:6UUvN-kh4dgJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=29">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><span class=gs_ctu>[CITATION]</span> Immunosuppression and cytotoxicity of <b>dengue </b>infection in the mouse <b>model</b>.</h3></div><font size=-1><span class=gs_a>UC Chaturvedi, R Dhawan&hellip; - <b>Dengue </b>and  &hellip;, 1997 - CAB INTERNATIONAL</span><br><span class=gs_fl><a href="/scholar?cites=2627254169482913829&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 19</a> - <a href="/scholar?q=related:JWixUr_hdSQJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar.bib?q=info:JWixUr_hdSQJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=30">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ajtmh.org/content/62/1/11.short" class=yC4B>Transmission thresholds for <b>dengue </b>in terms of Aedes aegypti pupae per person with discussion of their utility in source reduction efforts.</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ajtmh.org/cgi/reprint/62/1/11.pdf" class=yC4C><span class=gs_ctg2>[PDF]</span> from ajtmh.org</a></span><font size=-1><span class=gs_a>DA Focks, RJ Brenner, J Hayes&hellip; - The American journal of  &hellip;, 2000 - ASTMH</span><br><b>...</b> The estimates of transmission thresholds developed here are based on a pair of simulation models<br>
+(the Container- Inhabiting Mosquito Simulation <b>Model</b> [CIMSiM] and the <b>Dengue</b> Simulation <b>Model</b><br>
+[DENSiM]) developed to provide site- and weather-specific insight into the <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=2655505579044647314&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 139</a> - <a href="/scholar?q=related:kjEGMkFA2iQJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/3C/52/RN077048340.html?source=googlescholar" class=yC4D>BL Direct</a> - <a href="/scholar?cluster=2655505579044647314&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:kjEGMkFA2iQJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=31">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.pnas.org/content/103/31/11802.short" class=yC4E>Ecological and immunological determinants of <b>dengue </b>epidemics</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.pnas.org/content/103/31/11802.full" class=yC4F><span class=gs_ctg2>[HTML]</span> from pnas.org</a></span><font size=-1><span class=gs_a>HJ Wearing&hellip; - Proceedings of the National  &hellip;, 2006 - National Acad Sciences</span><br><b>...</b> 1. Comparison of annual <b>dengue</b> data for Thailand with <b>model</b> output. (A and B) Annual <b>...</b><br>
+2. ADE or variation in virulence; the dominant period and correlation of two <b>dengue</b><br>
+serotypes from deterministic <b>model</b> simulations. A, D, and G <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=694975333004976492&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 88</a> - <a href="/scholar?q=related:bKFrG2IMpQkJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/0E/04/RN192284890.html?source=googlescholar" class=yC50>BL Direct</a> - <a href="/scholar?cluster=694975333004976492&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 10 versions</a> - <a href="/scholar.bib?q=info:bKFrG2IMpQkJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=32">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0042682208005205" class=yC51>Antibodies play a greater role than immune cells in heterologous protection against secondary <b>dengue </b>virus infection in a mouse <b>model</b></a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2590773/" class=yC52><span class=gs_ctg2>[HTML]</span> from nih.gov</a></span><font size=-1><span class=gs_a>JL Kyle, SJ Balsitis, L Zhang, PR Beatty&hellip; - Virology, 2008 - Elsevier</span><br>The four serotypes of <b>dengue </b>virus (DENV1–4) are causative agents of <b>dengue </b>fever and <br><b>dengue </b>hemorrhagic fever/<b>dengue </b>shock syndrome (DHF/DSS). Previous DENV infection is <br>a risk factor for DHF/DSS during subsequent infection by a different serotype. Nonetheless<b> ...</b><br><span class=gs_fl><a href="/scholar?cites=15002528358131735180&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 21</a> - <a href="/scholar?q=related:jJoqDw6wM9AJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=15002528358131735180&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 7 versions</a> - <a href="/scholar.bib?q=info:jJoqDw6wM9AJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=33">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.pnas.org/content/105/6/2238.short" class=yC53>Decreases in <b>dengue </b>transmission may act to increase the incidence of <b>dengue </b>hemorrhagic fever</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.pnas.org/content/105/6/2238.long" class=yC54><span class=gs_ctg2>[HTML]</span> from pnas.org</a></span><font size=-1><span class=gs_a>Y Nagao&hellip; - &hellip;  of the National Academy of Sciences, 2008 - National Acad Sciences</span><br><b>...</b> challenging strain. This <b>model</b> captures the immunological assumptions present in a<br>
+<b>dengue</b> <b>model</b> by Wearing and Rohani (28). When parameterized <b>...</b> serotype dynamics.<br>
+In a two-serotype <b>model</b> of <b>dengue</b>, Ferguson et al. (30) showed <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=1837046672039696554&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 34</a> - <a href="/scholar?q=related:qli9EjeAfhkJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/23/23/RN224287263.html?source=googlescholar" class=yC55>BL Direct</a> - <a href="/scholar?cluster=1837046672039696554&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 12 versions</a> - <a href="/scholar.bib?q=info:qli9EjeAfhkJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=34">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S1740675706000156" class=yC56>Models of <b>dengue </b>virus infection</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1949394/" class=yC57><span class=gs_ctg2>[HTML]</span> from nih.gov</a></span><font size=-1><span class=gs_a>DA Bente&hellip; - Drug Discovery Today: Disease Models, 2006 - Elsevier</span><br><b>...</b> line xenografts. SCID mice reconstituted with human peripheral blood lymphocytes<br>
+(hu-PBL-SCID) have been widely used for studies of HIV pathogenesis and were<br>
+first evaluated as a <b>dengue</b> <b>model</b> in 1995 [30]. SCID mice <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=958650022018394161&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 37</a> - <a href="/scholar?q=related:MahTqh3PTQ0J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=958650022018394161&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 4 versions</a> - <a href="/scholar.bib?q=info:MahTqh3PTQ0J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=35">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.scielo.br/scielo.php?pid=S0074-02761992000400017&amp;script=sci_arttext" class=yC58>Replication of <b>dengue </b>viruses in mosquito cell cultures: a <b>model </b>from ultrastructural observations</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.scielo.br/scielo.php?pid=S0074-02761992000400017&amp;script=sci_pdf" class=yC59><span class=gs_ctg2>[PDF]</span> from scielo.br</a></span><font size=-1><span class=gs_a>OM Barth - Memórias do Instituto Oswaldo Cruz, 1992 - SciELO Brasil</span><br>Mosquito cell cultures infected with human sera from <b>dengue</b>-1 and <b>dengue</b>-2 outbreaks, <br>started in Rio de Janeiro by 1986 and 1990 respectively, were examined by electron <br>microscopy at different times post the infection of cell cultures. More information was <b> ...</b><br><span class=gs_fl><a href="/scholar?cites=10735043478890944983&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 20</a> - <a href="/scholar?q=related:1xmr1yqJ-pQJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/1F/5C/EN014162811.html?source=googlescholar" class=yC5A>BL Direct</a> - <a href="/scholar?cluster=10735043478890944983&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:1xmr1yqJ-pQJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=36">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.jimmunol.org/content/166/2/1057.short" class=yC5B>Bispecific monoclonal antibodies mediate binding of <b>dengue </b>virus to erythrocytes in a monkey <b>model </b>of passive viremia</a></h3></div><font size=-1><span class=gs_a>CS Hahn, OG French, P Foley&hellip; - The Journal of  &hellip;, 2001 - Am Assoc Immnol</span><br><b>Dengue</b> viruses (DEN), causative agents of <b>dengue</b> fever (DF) and more severe <b>dengue</b> hemorrhagic <br>
+fever (DHF)/<b>dengue</b> shock syndrome, infect over 100 million people every year. Among those <br>
+infected, up to one-half million people develop DHF, which requires an extensive hospital <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=14050838844995895719&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 21</a> - <a href="/scholar?q=related:p4E9KHyb_sIJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/16/5D/RN089997070.html?source=googlescholar" class=yC5C>BL Direct</a> - <a href="/scholar?cluster=14050838844995895719&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 2 versions</a> - <a href="/scholar.bib?q=info:p4E9KHyb_sIJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=37">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://ukpmc.ac.uk/abstract/MED/7572465" class=yC5D>A <b>model </b>to study cytokine profiles in primary and heterologously secondary <b>Dengue</b>-2 virus infections.</a></h3></div><font size=-1><span class=gs_a>KD Yang, CS Lee, KP Hwang, ML Chu&hellip; - Acta virologica, 1995 - ukpmc.ac.uk</span><br>Either your web browser doesn&#39;t support Javascript or it is currently turned off. In the latter <br>
+case, please turn on Javascript support in your web browser and reload this page.  <b> ...</b> A <b>model</b> <br>
+to study cytokine profiles in primary and heterologously secondary <b>Dengue</b>-2 virus <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=6965127400972047607&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 19</a> - <a href="/scholar?q=related:91RH5ncaqWAJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://scholar.googleusercontent.com/scholar?q=cache:91RH5ncaqWAJ:scholar.google.com/+Dengue++model&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Cached</a> - <a href="http://direct.bl.uk/research/12/50/EN027487970.html?source=googlescholar" class=yC5E>BL Direct</a> - <a href="/scholar?cluster=6965127400972047607&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 2 versions</a> - <a href="/scholar.bib?q=info:91RH5ncaqWAJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=38">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0001706X06001124" class=yC5F>Folk knowledge about <b>dengue </b>mosquitoes and contributions of health belief <b>model </b>in <b>dengue </b>control promotion in Northeast Thailand</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.thaiscience.info/Article%20for%20ThaiScience/Article/6/Ts-6%20folk%20knowledge%20about%20dengue%20mosquitoes%20and%20contributions%20of%20health%20belief%20model%20in%20dengue%20control%20promotion%20in%20northeast%20thailand.pdf" class=yC60><span class=gs_ctg2>[PDF]</span> from thaiscience.info</a></span><font size=-1><span class=gs_a>S Phuanukoonnon, M Brough&hellip; - Acta tropica, 2006 - Elsevier</span><br>The health belief <b>model </b>(HBM) has been adopted as the principal theory for health <br>education and communication for <b>dengue </b>haemorrhagic fever (DHF) prevention and control <br>in Thailand. The HBM focuses on persuading people to acknowledge their vulnerability <b> ...</b><br><span class=gs_fl><a href="/scholar?cites=14698330693744736449&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 19</a> - <a href="/scholar?q=related:wTjgD-T1-ssJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=14698330693744736449&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 12 versions</a> - <a href="/scholar.bib?q=info:wTjgD-T1-ssJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=39">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://books.google.com.br/books?hl=en&amp;lr=&amp;id=uVzboYJBIB8C&amp;oi=fnd&amp;pg=PA187&amp;dq=Dengue++model&amp;ots=5DEoOSy56X&amp;sig=Pk8kbp3T4Xm9h32h_NpC2-0Os98" class=yC61>Aedes aegypti density and the risk of <b>dengue</b>-virus transmission</a></h3></div><span class="gs_ggs gs_fl"><a href="http://library.wur.nl/ojs/index.php/frontis/article/viewFile/849/415" class=yC62><span class=gs_ctg2>[PDF]</span> from wur.nl</a></span><font size=-1><span class=gs_a>TW Scott, AC Morrison, W Takken&hellip; - Ecological aspects for  &hellip;, 2003 - books.google.com</span><br><b>...</b> aegypti. The <b>dengue</b> <b>model</b> accounts for the dynamics of a human population driven by<br>
+country-and age-specific birth and death rates. As part of a validation of the <b>dengue</b> <b>model</b>, data<br>
+from a 1978 <b>dengue</b> epidemic in Honduras were examined (Focks et al. 1993b). <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=5397955226211232222&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 34</a> - <a href="/scholar?q=related:3qnIu61j6UoJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=5397955226211232222&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 9 versions</a> - <a href="/scholar.bib?q=info:3qnIu61j6UoJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=40">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://jvi.asm.org/cgi/content/abstract/79/21/13797" class=yC63><b>Dengue </b>fever in humanized NOD/SCID mice</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1262615/" class=yC64><span class=gs_ctg2>[HTML]</span> from nih.gov</a></span><font size=-1><span class=gs_a>DA Bente, MW Melkus, JV Garcia&hellip; - Journal of  &hellip;, 2005 - Am Soc Microbiol</span><br><b>...</b> 1999. Development of a novel mouse <b>model</b> for <b>dengue</b> virus infection. <b>...</b> A <b>Dengue</b> Fever<br>
+Viremia <b>Model</b> in Mice Shows Reduction in Viral Replication and Suppression of the<br>
+Inflammatory Response after Treatment with Antiviral Drugs. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=17245311440652074158&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 59</a> - <a href="/scholar?q=related:rvwLvWKnU-8J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/3C/29/RN176155514.html?source=googlescholar" class=yC65>BL Direct</a> - <a href="/scholar?cluster=17245311440652074158&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 10 versions</a> - <a href="/scholar.bib?q=info:rvwLvWKnU-8J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=41">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.springerlink.com/index/qrvbepxvffyewck1.pdf" class=yC66>An investigation of relationships between climate and <b>dengue </b>using a water budgeting technique</a></h3></div><font size=-1><span class=gs_a>KV Schreiber - International Journal of Biometeorology, 2001 - Springer</span><br><b>...</b> Table 2 Parameter estimates for intraannual <b>dengue</b> <b>model</b> 1. D at the start of an ordinary variable<br>
+indicates the change from the preceding 2 weeks; the number at the end of the variable indicates<br>
+the num- ber of weeks the variable pre- ceded <b>dengue</b> incidence. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=16645283618892990000&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 27</a> - <a href="/scholar?q=related:MMa-yULt_-YJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/3E/55/RN098942208.html?source=googlescholar" class=yC67>BL Direct</a> - <a href="/scholar?cluster=16645283618892990000&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 4 versions</a> - <a href="/scholar.bib?q=info:MMa-yULt_-YJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=42">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://jgv.sgmjournals.org/content/81/9/2177.short" class=yC68>Manifestation of thrombocytopenia in <b>dengue</b>-2-virus-infected mice</a></h3></div><span class="gs_ggs gs_fl"><a href="http://jgv.sgmjournals.org/content/81/9/2177.full" class=yC69><span class=gs_ctg2>[HTML]</span> from sgmjournals.org</a></span><font size=-1><span class=gs_a>KJ Huang, SYJ Li, SC Chen, HS Liu&hellip; - Journal of General  &hellip;, 2000 - Soc General Microbiol</span><br><b>...</b> In this study, the establishment is reported of a murine <b>model</b> for <b>dengue</b> virus infection that<br>
+resembles the thrombocytopenia manifestation. <b>...</b> Development of a novel mouse <b>model</b> for <b>dengue</b><br>
+virus infection.Virology263, 70-77.[Medline]. Bhamarapravati, N. (1989). <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=12265075058250650886&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 69</a> - <a href="/scholar?q=related:BpWIRshMNqoJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/4D/12/RN082960351.html?source=googlescholar" class=yC6A>BL Direct</a> - <a href="/scholar?cluster=12265075058250650886&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 7 versions</a> - <a href="/scholar.bib?q=info:BpWIRshMNqoJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=43">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><span class=gs_ctc>[HTML]</span> <a href="http://dx.plos.org/10.1371/journal.pmed.1000171" class=yC6B>A prospective nested case-control study of <b>dengue </b>in infants: rethinking and refining the antibody-dependent enhancement <b>dengue </b>hemorrhagic fever <b>model</b></a></h3></div><span class="gs_ggs gs_fl"><a href="http://dx.plos.org/10.1371/journal.pmed.1000171" class=yC6C><span class=gs_ctg2>[HTML]</span> from plos.org</a>  <br><a href="http://openurl.ebscohost.com/linksvc/linking.aspx?custid=ns017328&amp;sid=google&amp;auinit=DH&amp;aulast=Libraty&amp;atitle=A+prospective+nested+case-control+study+of+dengue+in+infants:+rethinking+and+refining+the+antibody-dependent+enhancement+dengue+hemorrhagic+fever+model&amp;title=PLoS+Medicine&amp;volume=6&amp;issue=10&amp;date=2009&amp;spage=e1000171&amp;issn=1549-1277" class=yC6D>EBSCOhost Full Text</a></span><font size=-1><span class=gs_a>DH Libraty, LP Acosta, V Tallo, E Segubre-Mercado&hellip; - PLoS Medicine, 2009 - dx.plos.org</span><br>The study captured 60 infants with DENV infections across a wide spectrum of disease <br>
+severity. DENV3 was the predominant serotype among the infants with symptomatic (35/40) and <br>
+inapparent (15/20) DENV infections, and 59/60 infants had a primary DENV infection. The <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=5699331135335214974&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 21</a> - <a href="/scholar?q=related:fq_6ongXGE8J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://scholar.googleusercontent.com/scholar?q=cache:fq_6ongXGE8J:scholar.google.com/+Dengue++model&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Cached</a> - <a href="/scholar?cluster=5699331135335214974&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 9 versions</a> - <a href="/scholar.bib?q=info:fq_6ongXGE8J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=44">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0166093402000654" class=yC6E>An improved endothelial barrier <b>model </b>to investigate <b>dengue </b>haemorrhagic fever</a></h3></div><font size=-1><span class=gs_a>M Jacobs&hellip; - Journal of virological methods, 2002 - Elsevier</span><br>A cell culture <b>model </b>suitable for studies of <b>dengue </b>haemorrhagic fever was developed, <br>based on culture of primary human umbilical vein endothelial cells (HUVECs) on a <br>permeable membrane. By electron microscopy, cultured HUVECs at day 11 resembled <b> ...</b><br><span class=gs_fl><a href="/scholar?cites=7008092560940999744&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 15</a> - <a href="/scholar?q=related:QCTyvw2_QWEJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=7008092560940999744&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:QCTyvw2_QWEJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=45">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ingentaconnect.com/content/esa/jme/1993/00000030/00000006/art00008" class=yC6F>Dynamic life table <b>model </b>for Aedes aegypti (Diptera: Culicidae): simulation results and validation</a></h3></div><font size=-1><span class=gs_a>DA Focks, DG Haile, E Daniels&hellip; - Journal of Medical  &hellip;, 1993 - ingentaconnect.com</span><br><b>...</b> dation is a necessary step in the process of <b>model</b> development, the ultimate usefulness of CIMSiM<br>
+will be demonstrated by its use in operational programs, teaching, simulation studies, or as method<br>
+of providing entomological inputs for a <b>dengue</b> transmission <b>model</b> (Focks et al <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=9666774341579825328&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 102</a> - <a href="/scholar?q=related:sOC5AQxIJ4YJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/27/28/EN011389764.html?source=googlescholar" class=yC70>BL Direct</a> - <a href="/scholar?cluster=9666774341579825328&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 5 versions</a> - <a href="/scholar.bib?q=info:sOC5AQxIJ4YJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=46">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://mbe.oxfordjournals.org/content/20/1/122.short" class=yC71>Inferring the rate and time-scale of <b>dengue </b>virus evolution</a></h3></div><span class="gs_ggs gs_fl"><a href="http://mbe.oxfordjournals.org/content/20/1/122.full" class=yC72><span class=gs_ctg2>[HTML]</span> from oxfordjournals.org</a></span><font size=-1><span class=gs_a>SS Twiddy, EC Holmes&hellip; - Molecular biology and evolution, 2003 - SMBE</span><br><b>...</b> with the DR <b>model</b>) in each data set are given in table 1. In all cases, the SR <b>model</b> is strongly<br>
+rejected as an adequate description of the evolution of <b>dengue</b> virus, presumably because this<br>
+<b>model</b> does not accommodate for the different dates of sampling of the isolates. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=3657365231242702284&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 76</a> - <a href="/scholar?q=related:zO0V3kySwTIJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/2A/5B/RN125019766.html?source=googlescholar" class=yC73>BL Direct</a> - <a href="/scholar?cluster=3657365231242702284&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:zO0V3kySwTIJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=47">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.pnas.org/content/102/42/15259.short" class=yC74>Dynamic effects of antibody-dependent enhancement on the fitness of viruses</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.pnas.org/content/102/42/15259.full" class=yC75><span class=gs_ctg2>[HTML]</span> from pnas.org</a></span><font size=-1><span class=gs_a>DAT Cummings, IB Schwartz&hellip; - Proceedings of the  &hellip;, 2005 - National Acad Sciences</span><br><b>...</b> We have generalized the two-serotype <b>dengue</b> <b>model</b> developed by Ferguson et al.<br>
+(27 <b>...</b> 2. Behavior of the susceptible fraction of the <b>dengue</b> four-serotype <b>model</b> for various<br>
+values of φ all , the ADE factor for each serotype. Shown <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=73082258333406348&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 62</a> - <a href="/scholar?q=related:jJRYP-2jAwEJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/4C/5B/RN176146276.html?source=googlescholar" class=yC76>BL Direct</a> - <a href="/scholar?cluster=73082258333406348&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 14 versions</a> - <a href="/scholar.bib?q=info:jJRYP-2jAwEJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=48">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.liebertonline.com/doi/abs/10.1089/vim.2008.0063" class=yC77>The cellular immune response plays an important role in protecting against <b>dengue </b>virus in the mouse encephalitis <b>model</b></a></h3></div><font size=-1><span class=gs_a>L Gil, C López, A Blanco, L Lazo, J Martín&hellip; - Viral  &hellip;, 2009 - liebertonline.com</span><br>For several years, researchers have known that the generation of neutralizing antibodies is <br>a prerequisite for attaining adequate protection against <b>dengue </b>virus. Nevertheless, the <br>cellular immune response is the principal arm of the adaptive immune system against non<b> ...</b><br><span class=gs_fl><a href="/scholar?cites=2796324456226908765&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 15</a> - <a href="/scholar?q=related:XWokAkeKziYJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=2796324456226908765&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 4 versions</a> - <a href="/scholar.bib?q=info:XWokAkeKziYJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=49">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0092867402006608" class=yC78>Structure of <b>Dengue </b>Virus:: Implications for Flavivirus Organization, Maturation, and Fusion</a></h3></div><span class="gs_ggs gs_fl"><a href="http://cryoem.ucsd.edu/publication-pdfs/2002-Kuhn-etal-Cell.pdf" class=yC79><span class=gs_ctg2>[PDF]</span> from ucsd.edu</a></span><font size=-1><span class=gs_a>RJ Kuhn, W Zhang, MG Rossmann, SV Pletnev&hellip; - Cell, 2002 - Elsevier</span><br><b>...</b> Article. Structure of <b>Dengue</b> Virus: Implications for Flavivirus Organization, Maturation, and Fusion. <b>...</b><br>
+<b>Dengue</b> hemorrhagic fever was mostly confined to Southeast Asia until the 1960&#39;s, when it also<br>
+became endemic in Central America and, more recently, in South America. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=11396238019641704842&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 450</a> - <a href="/scholar?q=related:ioGLWBmSJ54J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=11396238019641704842&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 11 versions</a> - <a href="/scholar.bib?q=info:ioGLWBmSJ54J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=50">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.pnas.org/content/103/38/14234.short" class=yC7A>Cross-protective immunity can account for the alternating epidemic pattern of <b>dengue </b>virus serotypes circulating in Bangkok</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.pnas.org/content/103/38/14234.full" class=yC7B><span class=gs_ctg2>[HTML]</span> from pnas.org</a></span><font size=-1><span class=gs_a>B Adams, EC Holmes, C Zhang&hellip; - Proceedings of the  &hellip;, 2006 - National Acad Sciences</span><br><b>...</b> Although it has been suggested that there is either weak cross-protection or cross-enhancement<br>
+in <b>dengue</b>, in our <b>model</b>, neither of these lead to the characteristic out-of-phase pattern that we<br>
+observe between DENV-1 and -4. That DENV-1, -2, and -3 are approximately in <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=7497591331018135029&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 69</a> - <a href="/scholar?q=related:9VVidJfLDGgJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/30/43/RN195003440.html?source=googlescholar" class=yC7C>BL Direct</a> - <a href="/scholar?cluster=7497591331018135029&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 13 versions</a> - <a href="/scholar.bib?q=info:9VVidJfLDGgJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=51">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ingentaconnect.com/content/esa/jme/1993/00000030/00000006/art00007" class=yC7D>Dynamic life table <b>model </b>for Aedes aegypti (Diptera: Culicidae): analysis of the literature and <b>model </b>development</a></h3></div><font size=-1><span class=gs_a>DA Focks, DG Haile, E Daniels&hellip; - Journal of Medical  &hellip;, 1993 - ingentaconnect.com</span><br><b>...</b> Artificial and natural containers are the <b>dengue</b> transmission <b>model</b> begins with a <b>model</b><br>
+immature habitat of mosquitoes involved in the of the population dynamics of the primary urban<br>
+transmission of these viruses. Familiar examples vector Ae. aegypti. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=9129462672517732772&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 143</a> - <a href="/scholar?q=related:pJmbQe5dsn4J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/27/1E/EN011389752.html?source=googlescholar" class=yC7E>BL Direct</a> - <a href="/scholar?cluster=9129462672517732772&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:pJmbQe5dsn4J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=52">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><span class=gs_ctc>[PDF]</span> <a href="http://pustaka.unpad.ac.id/wp-content/uploads/2009/06/a_two-dimensional_model_for_the_transmission.pdf" class=yC7F>A two-dimensional <b>model </b>for the transmission of <b>dengue </b>fever disease</a></h3></div><span class="gs_ggs gs_fl"><a href="http://pustaka.unpad.ac.id/wp-content/uploads/2009/06/a_two-dimensional_model_for_the_transmission.pdf" class=yC80><span class=gs_ctg2>[PDF]</span> from unpad.ac.id</a></span><font size=-1><span class=gs_a>E Soewono&hellip; - Bull. Malaysian Math. Sci. Soc, 2001 - pustaka.unpad.ac.id</span><br><b>...</b> Km 21 Jatinangor, Bandung 45363 INDONESIA A transmission <b>model</b> for <b>dengue</b> fever is<br>
+discussed here. Restricting the dynamics for the <b>...</b> 2. Host-Vector <b>Model</b> for a <b>Dengue</b> Transmission<br>
+We review the Host-Vector <b>model</b> of Esteva-Vargas [1] for the transmission of <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=3297354726738620986&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 11</a> - <a href="/scholar?q=related:OvK1YaeOwi0J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://scholar.googleusercontent.com/scholar?q=cache:OvK1YaeOwi0J:scholar.google.com/+Dengue++model&amp;hl=en&amp;num=100&amp;as_sdt=0,5">View as HTML</a> - <a href="/scholar?cluster=3297354726738620986&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 2 versions</a> - <a href="/scholar.bib?q=info:OvK1YaeOwi0J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=53">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://arxiv.org/abs/0806.4576" class=yC81>Torus bifurcations, isolas and chaotic attractors in a simple <b>dengue model </b>with ADE and temporary cross immunity</a></h3></div><span class="gs_ggs gs_fl"><a href="http://arxiv.org/pdf/0806.4576" class=yC82><span class=gs_ctg2>[PDF]</span> from arxiv.org</a></span><font size=-1><span class=gs_a>M Aguiar, N Stollenwerk&hellip; - Arxiv preprint arXiv:0806.4576, 2008 - arxiv.org</span><br><b>...</b> in a simple <b>dengue</b> <b>model</b> with ADE <b>...</b> [6] M. Aguiar, BW Kooi, and N. Stollenwerk, Epidemiology<br>
+of <b>dengue</b> fever: A <b>model</b> with temporary cross-immunity and possible secondary infection shows<br>
+bifurcations and chaotic behaviour in wide parameter regions, submitted (2008). <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=12678929042069410445&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 3</a> - <a href="/scholar?q=related:jVLutMma9K8J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=12678929042069410445&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 5 versions</a> - <a href="/scholar.bib?q=info:jVLutMma9K8J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=54">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0025556408000734" class=yC83>Backward bifurcations in <b>dengue </b>transmission dynamics</a></h3></div><span class="gs_ggs gs_fl"><a href="http://phad.cc.umanitoba.ca/~gumelab/Garba1.pdf" class=yC84><span class=gs_ctg2>[PDF]</span> from umanitoba.ca</a></span><font size=-1><span class=gs_a>SM Garba, AB Gumel&hellip; - Mathematical biosciences, 2008 - Elsevier</span><br><b>...</b> While Feng and Velasco-Hernandez [29] investigated the competitive exclusion principle in<br>
+a two-strain <b>dengue</b> <b>model</b>, Chowell et al. <b>...</b> Tewa et al. [46] established global asymptotic stability<br>
+of the equilibria of a single-strain <b>dengue</b> <b>model</b>, and Struchiner et al. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=16263996235426830092&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 17</a> - <a href="/scholar?q=related:DBfo4GdSteEJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=16263996235426830092&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:DBfo4GdSteEJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=55">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://mbe.oxfordjournals.org/content/16/3/405.short" class=yC85>Phylogenetic evidence for recombination in <b>dengue </b>virus.</a></h3></div><span class="gs_ggs gs_fl"><a href="http://mbe.oxfordjournals.org/content/16/3/405.full.pdf" class=yC86><span class=gs_ctg2>[PDF]</span> from oxfordjournals.org</a></span><font size=-1><span class=gs_a>EC Holmes, M Worobey&hellip; - Molecular Biology and Evolution, 1999 - SMBE</span><br><b>...</b> No good evidence for recombination was found in the other <b>dengue</b> serotypes or genes, with<br>
+any networking observed more likely due <b>...</b> then able to find the breakpoints in the sequence which<br>
+gave the highest likelihood under an evolutionary <b>model</b> incorporating recombination. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=9741976010606976947&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 218</a> - <a href="/scholar?q=related:sx-bApFzMocJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/58/53/RN058214840.html?source=googlescholar" class=yC87>BL Direct</a> - <a href="/scholar?cluster=9741976010606976947&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:sx-bApFzMocJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=56">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0140673697124837" class=yC88><b>Dengue </b>and <b>dengue </b>haemorrhagic fever</a></h3></div><span class="gs_ggs gs_fl"><a href="http://planet.uwc.ac.za/nisl/Gwen&#39;s%20Files/GeoCourse/Climate%20Change/Verification/P%20Reiter/Doubtful%20Use/Dengue2Reiter.pdf" class=yC89><span class=gs_ctg2>[PDF]</span> from uwc.ac.za</a>  <br><a href="http://openurl.ebscohost.com/linksvc/linking.aspx?custid=ns017328&amp;sid=google&amp;auinit=JG&amp;aulast=Rigau-P%C3%A9rez&amp;atitle=Dengue+and+dengue+haemorrhagic+fever&amp;title=Lancet&amp;volume=352&amp;issue=9132&amp;date=1998&amp;spage=971&amp;issn=0099-5355" class=yC8A>EBSCOhost Full Text</a></span><font size=-1><span class=gs_a>JG Rigau-Pérez, GG Clark, DJ Gubler, P Reiter&hellip; - The Lancet, 1998 - Elsevier</span><br><b>...</b> 1 , 2 and 5. Clinical manifestations. <b>Dengue</b>. <b>...</b> 13 and 15 If symptoms start more than two weeks<br>
+after the patient has left a <b>dengue</b>-endemic area, or if the fever lasts more than two weeks,<br>
+<b>dengue</b> can be effectively ruled out. <b>Dengue</b> haemorrhagic fever. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=6984868907275529909&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 473</a> - <a href="/scholar?q=related:tS7UhEM972AJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/4C/45/RN049929262.html?source=googlescholar" class=yC8B>BL Direct</a> - <a href="/scholar?cluster=6984868907275529909&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 9 versions</a> - <a href="/scholar.bib?q=info:tS7UhEM972AJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=57">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ajtmh.org/cgi/content/abstract/57/3/285" class=yC8C>Potential changes in the distribution of <b>dengue </b>transmission under climate warming</a></h3></div><font size=-1><span class=gs_a>TH Jetten&hellip; - The American journal of tropical medicine and  &hellip;, 1997 - ASTMH</span><br><b>...</b> centrally located Bangkok as representative of Thailand in our vectorial capacity<br>
+<b>model</b> yields predictions that <b>dengue</b> would, as observed, be seen every month and<br>
+that transmission would be strongly seasonal as well (Figure
+<br><span class=gs_fl><a href="/scholar?cites=1808594154118635882&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 159</a> - <a href="/scholar?q=related:auEWA81qGRkJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/15/3B/RN033074359.html?source=googlescholar" class=yC8D>BL Direct</a> - <a href="/scholar?cluster=1808594154118635882&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 7 versions</a> - <a href="/scholar.bib?q=info:auEWA81qGRkJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=58">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0096300305009331" class=yC8E><b>Dengue </b>fever: Mathematical modelling and computer simulation</a></h3></div><font size=-1><span class=gs_a>M Derouich&hellip; - Applied mathematics and computation, 2006 - Elsevier</span><br><b>...</b> Keywords: <b>Dengue</b> fever; <b>Dengue</b> haemorrhagic fever; Vaccination program mathematical <b>model</b>;<br>
+Stability analysis; Simulation. <b>...</b> The Cost effectiveness of a pediatric <b>dengue</b> vaccine was discussed<br>
+through a <b>model</b> of vaccinating children at 15 months in Southeast Asia. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=2932697486824870636&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 18</a> - <a href="/scholar?q=related:7JLgf9MIsygJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=2932697486824870636&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 2 versions</a> - <a href="/scholar.bib?q=info:7JLgf9MIsygJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=59">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><span class=gs_ctc>[PDF]</span> <a href="http://www.int-res.com/articles/cr2003/25/c025p085.pdf" class=yC8F>Worldwide fluctuations in <b>dengue </b>fever case related to climate variability</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.int-res.com/articles/cr2003/25/c025p085.pdf" class=yC90><span class=gs_ctg2>[PDF]</span> from int-res.com</a></span><font size=-1><span class=gs_a>JM Hopp&hellip; - Climate Research, 2003 - int-res.com</span><br><b>...</b> We have developed a global-scale, climate-driven <b>model</b> of the principal <b>dengue</b> mosquito<br>
+Aedes aegypti (Hopp &amp; Foley 2001). <b>...</b> KEY WORDS: <b>Dengue</b> · Climate · Aedes aegypti ·<br>
+Mosquito · <b>Model</b> · Population dynamics · Climate forecasts <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=4665182359948161546&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 55</a> - <a href="/scholar?q=related:CvIgoaMOvkAJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/56/41/RN139999513.html?source=googlescholar" class=yC91>BL Direct</a> - <a href="/scholar?cluster=4665182359948161546&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 11 versions</a> - <a href="/scholar.bib?q=info:CvIgoaMOvkAJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=60">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0025556406002483" class=yC92>Estimation of the reproduction number of <b>dengue </b>fever from spatial epidemic data</a></h3></div><span class="gs_ggs gs_fl"><a href="http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.100.1285&amp;rep=rep1&amp;type=pdf" class=yC93><span class=gs_ctg2>[PDF]</span> from psu.edu</a></span><font size=-1><span class=gs_a>G Chowell, P Diaz-Dueñas, JC Miller&hellip; - Mathematical  &hellip;, 2007 - Elsevier</span><br><b>...</b> Background 2.2. Data sources 2.3. Method I 2.3.1. Standard <b>dengue</b> epidemic <b>model</b> 2.3.2.<br>
+Estimating View the MathML source from the intrinsic growth rate 2.3.3. Uncertainty analysis<br>
+on View the MathML source 2.4. <b>...</b> 2.3.1. Standard <b>dengue</b> epidemic <b>model</b>. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=11535372795467580785&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 27</a> - <a href="/scholar?q=related:ccWMwXDgFaAJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=11535372795467580785&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:ccWMwXDgFaAJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=61">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ajtmh.org/cgi/content/abstract/34/3/625" class=yC94><b>Dengue </b>transmission in two Puerto Rican communities in 1982</a></h3></div><font size=-1><span class=gs_a>SH Waterman, RJ Novak, GE Sather&hellip; - The American journal of  &hellip;, 1985 - ASTMH</span><br><b>...</b> Yariables making a significant contribution to the <b>model</b> for <b>dengue</b> incidence were wood vs. <b>...</b> That<br>
+screens did contribute to the <b>dengue</b> antibody prevalence <b>model</b>, however, suggests that lack<br>
+of screens is a small but significant risk factor for <b>dengue</b> transmission. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=5902474897161009050&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 52</a> - <a href="/scholar?q=related:mjfxdKXN6VEJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=5902474897161009050&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 4 versions</a> - <a href="/scholar.bib?q=info:mjfxdKXN6VEJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=62">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://rspb.royalsocietypublishing.org/content/272/1568/1171.short" class=yC95>Influence of spatial heterogeneity on an emerging infectious disease: the case of <b>dengue </b>epidemics</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1559809/" class=yC96><span class=gs_ctg2>[HTML]</span> from nih.gov</a></span><font size=-1><span class=gs_a>C Favier, D Schmit&hellip; - &hellip;  of the Royal  &hellip;, 2005 - rspb.royalsocietypublishing.org</span><br><b>...</b> Soc . 79, 409–417. CrossRef. ↵: Esteva L,; Vargas C. 1998 Analysis of a <b>dengue</b>-disease<br>
+transmission <b>model</b>. Math. Biosci . 150, 131–151. <b>...</b> 2002 Potential effect of population and climate<br>
+changes on global distribution of <b>dengue</b> fever: an empirical <b>model</b>. Lancet . 360, 830–834. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=3307516581705526330&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 40</a> - <a href="/scholar?q=related:OqxFnc6o5i0J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=3307516581705526330&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 10 versions</a> - <a href="/scholar.bib?q=info:OqxFnc6o5i0J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=63">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S1931312810000302" class=yC97>Enhanced infection of liver sinusoidal endothelial cells in a mouse <b>model </b>of antibody-induced severe <b>dengue </b>disease</a></h3></div><font size=-1><span class=gs_a>RM Zellweger, TR Prestwood&hellip; - Cell Host &amp; Microbe, 2010 - Elsevier</span><br><b>Dengue </b>virus (DENV) causes disease ranging from <b>dengue </b>fever (DF), a self-limited febrile <br>illness, to the potentially lethal <b>dengue </b>hemorrhagic fever and <b>dengue </b>shock syndrome <br>(DHF/DSS). DHF/DSS usually occurs in patients who have acquired DENV-reactive <b> ...</b><br><span class=gs_fl><a href="/scholar?cites=3920308449538099210&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 19</a> - <a href="/scholar?q=related:CkiuoMO7ZzYJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=3920308449538099210&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 2 versions</a> - <a href="/scholar.bib?q=info:CkiuoMO7ZzYJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=64">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0025556400000249" class=yC98>Influence of vertical and mechanical transmission on the dynamics of <b>dengue </b>disease</a></h3></div><span class="gs_ggs gs_fl"><a href="http://elmu.umm.ac.id/file.php/1/jurnal/M/Mathematical%20Biosciences/Vol167.Issue1.Sept2000/6196.pdf" class=yC99><span class=gs_ctg2>[PDF]</span> from umm.ac.id</a></span><font size=-1><span class=gs_a>L Esteva&hellip; - Mathematical Biosciences, 2000 - Elsevier</span><br><b>...</b> As a theoretical experiment, we incorporated both factors in the transmission of <b>dengue</b> disease.<br>
+For this <b>model</b> the threshold condition that determines the existence and stability of the endemic<br>
+equilibrium is given by. We want to analyze how changes in the mechanical <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=1684895745591479913&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 49</a> - <a href="/scholar?q=related:aQ6M78DzYRcJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/13/2B/RN082810262.html?source=googlescholar" class=yC9A>BL Direct</a> - <a href="/scholar?cluster=1684895745591479913&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 7 versions</a> - <a href="/scholar.bib?q=info:aQ6M78DzYRcJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=65">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ajtmh.org/cgi/content/abstract/52/6/496" class=yC9B>Risk factors for <b>dengue </b>infection during an outbreak in Yanes, Puerto Rico in 1991</a></h3></div><font size=-1><span class=gs_a>L Rodriguez-Figueroa, JG Rigau-Perez&hellip; - The American journal of  &hellip;, 1995 - ASTMH</span><br><b>...</b> 1991, the Yanes sector was chosen for an en tomologic survey (Reiter P. Centers for Disease<br>
+Control and Prevention [CDC], unpublished data) to measure the param eters (vector/host density,<br>
+mosquito infection rates) used in a stochastic <b>model</b> of <b>dengue</b> transmission.7 In <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=8283259935369686468&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 66</a> - <a href="/scholar?q=related:xG3vTQYN9HIJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/3D/35/EN029322752.html?source=googlescholar" class=yC9C>BL Direct</a> - <a href="/scholar?cluster=8283259935369686468&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 3 versions</a> - <a href="/scholar.bib?q=info:xG3vTQYN9HIJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=66">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://jvi.asm.org/cgi/content/abstract/72/12/9729" class=yC9D>Study of <b>dengue </b>virus infection in SCID mice engrafted with human K562 cells</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC110483/" class=yC9E><span class=gs_ctg2>[HTML]</span> from nih.gov</a></span><font size=-1><span class=gs_a>YL Lin, CL Liao, LK Chen, CT Yeh, CI Liu&hellip; - Journal of  &hellip;, 1998 - Am Soc Microbiol</span><br><b>...</b> Here we report that severe combined immunodeficient (SCID) mice engrafted with<br>
+human K562 cells (K562-SCID mice) can be used as an animal <b>model</b> to study <b>dengue</b><br>
+virus (DEN) infection. After intratumor injection into K562 <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=14758581563681626676&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 108</a> - <a href="/scholar?q=related:NFrf47wD0cwJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/4E/3A/RN052989784.html?source=googlescholar" class=yC9F>BL Direct</a> - <a href="/scholar?cluster=14758581563681626676&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 9 versions</a> - <a href="/scholar.bib?q=info:NFrf47wD0cwJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=67">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.springerlink.com/index/80rfvgtg4wykramd.pdf" class=yCA0>Coexistence of different serotypes of <b>dengue </b>virus</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.bondy.ird.fr/~bacaer/dengue_biblio/dengue_math_biol_46.pdf" class=yCA1><span class=gs_ctg2>[PDF]</span> from ird.fr</a></span><font size=-1><span class=gs_a>L Esteva&hellip; - Journal of mathematical biology, 2003 - Springer</span><br><b>...</b> This disease is produced by any of the four serotypes of <b>dengue</b> arbovirus. Each serotype<br>
+produces permanent immunity to it, but only a certain degree of cross–immunity to heterologous<br>
+serotypes. In our <b>model</b> we consider the relation between two serotypes. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=6242191931779661529&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 54</a> - <a href="/scholar?q=related:2T6JSX24oFYJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/20/09/RN125883667.html?source=googlescholar" class=yCA2>BL Direct</a> - <a href="/scholar?cluster=6242191931779661529&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:2T6JSX24oFYJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=68">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://rstb.royalsocietypublishing.org/content/354/1384/757.short" class=yCA3>Transmission dynamics and epidemiology of <b>dengue</b>: insights from age–stratified sero–prevalence surveys</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1692557/pdf/10365401.pdf" class=yCA4><span class=gs_ctg2>[PDF]</span> from nih.gov</a></span><font size=-1><span class=gs_a>NM Ferguson, CA Donnelly&hellip; - &hellip;  of the Royal  &hellip;, 1999 - rstb.royalsocietypublishing.org</span><br><b>...</b> Such values are higher than those obtained from earlier analyses, and the implications<br>
+of this for <b>dengue</b> control are discussed. Keywords: epidemiology; <b>model</b>; <b>dengue</b>;<br>
+sero-prevalence; antibody-dependent enhancement; R0 <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=10678621591144326013&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 69</a> - <a href="/scholar?q=related:fWP5ZsIVMpQJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/16/48/RN060002204.html?source=googlescholar" class=yCA5>BL Direct</a> - <a href="/scholar?cluster=10678621591144326013&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 9 versions</a> - <a href="/scholar.bib?q=info:fWP5ZsIVMpQJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=69">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://onlinelibrary.wiley.com/doi/10.1111/j.1749-6632.2009.05057.x/full" class=yCA6>A mouse <b>model </b>for studying <b>dengue </b>virus pathogenesis and immune response</a></h3></div><font size=-1><span class=gs_a>KL Williams, S Zompi, PR Beatty&hellip; - Annals of the New York  &hellip;, 2009 - Wiley Online Library</span><br>A small animal <b>model</b> for studying <b>dengue</b> disease is of critical importance to furthering many <br>
+areas of <b>dengue</b> research, including host immunity, disease pathogenesis, and drug and vaccine <br>
+development. Recent characterization of the AG129 mouse <b>model</b> has demonstrated it to <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=16136259168533053880&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 15</a> - <a href="/scholar?q=related:uIENYDiC798J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=16136259168533053880&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 5 versions</a> - <a href="/scholar.bib?q=info:uIENYDiC798J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=70">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://imsear.hellis.org/handle/123456789/31564" class=yCA7>A realistic age structured transmission <b>model </b>for <b>dengue </b>hemorrhagic fever in Thailand.</a></h3></div><span class="gs_ggs gs_fl"><a href="http://imsear.hellis.org/bitstream/123456789/31564/2/336.pdf" class=yCA8><span class=gs_ctg2>[PDF]</span> from hellis.org</a></span><font size=-1><span class=gs_a>P Pongsumpun&hellip; - 2001 - imsear.hellis.org</span><br><b>Dengue</b> hemorrhagic fever (DHF) is one of the emerging viral disease spreading through- out <br>
+the tropical regions of the world. From its first appearance in the Philippines in 1953, it has become <br>
+the most important arthropod- borne viral disease of humans (Monath, 1994). It has been <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=3768718552725889582&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 9</a> - <a href="/scholar?q=related:LqKmYY4tTTQJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/0E/4C/RN101114612.html?source=googlescholar" class=yCA9>BL Direct</a> - <a href="/scholar?cluster=3768718552725889582&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:LqKmYY4tTTQJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=71">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0042682200907232" class=yCAA>A novel <b>model </b>for the study of the therapy of flavivirus infections using the Modoc virus</a></h3></div><font size=-1><span class=gs_a>P Leyssen, A Van Lommel, C Drosten, H Schmitz&hellip; - Virology, 2001 - Elsevier</span><br><b>...</b> References. 1. J. An, KJ Kimura, Y. Hirabayashi and K. Yasui, Development of a novel mouse<br>
+<b>model</b> for <b>dengue</b> virus infection. Virology 263 (1999), pp. 70–77. <b>...</b> 25. AJ Johnson and JT Roehrig,<br>
+New mouse <b>model</b> for <b>dengue</b> virus vaccine testing. J. Virol. 73 (1999), pp. 783–786. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=4944836912113701777&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 34</a> - <a href="/scholar?q=related:kdPGAvmWn0QJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/1E/00/RN090950710.html?source=googlescholar" class=yCAB>BL Direct</a> - <a href="/scholar?cluster=4944836912113701777&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 7 versions</a> - <a href="/scholar.bib?q=info:kdPGAvmWn0QJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=72">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.springerlink.com/index/7NU82748056206J2.pdf" class=yCAC>Immunopathogenesis of <b>dengue </b>virus infection</a></h3></div><span class="gs_ggs gs_fl"><a href="http://140.116.203.51/site2/ocwCoursePPT/61JBS20018377.pdf" class=yCAD><span class=gs_ctg2>[PDF]</span> from 140.116.203.51</a>  <br><a href="http://openurl.ebscohost.com/linksvc/linking.aspx?custid=ns017328&amp;sid=google&amp;auinit=HY&amp;aulast=Lei&amp;atitle=Immunopathogenesis+of+dengue+virus+infection&amp;title=Journal+of+Biomedical+Science&amp;volume=8&amp;issue=5&amp;date=2001&amp;spage=377&amp;issn=1021-7770" class=yCAE>EBSCOhost Full Text</a></span><font size=-1><span class=gs_a>HY Lei, TM Yeh, HS Liu, YS Lin&hellip; - Journal of Biomedical  &hellip;, 2001 - Springer</span><br><b>...</b> Consistent with human studies, we also found that transient thrombocytopenia caused by <b>dengue</b><br>
+virus infection is associated with the generation of anti-platelet antibodies in a murine <b>model</b> of<br>
+<b>dengue</b> virus infection [24]. <b>...</b> Animal <b>Model</b> of <b>Dengue</b> Virus Infection <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=6485600210150450152&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 193</a> - <a href="/scholar?q=related:6GM3aQd7AVoJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/0E/46/RN101663917.html?source=googlescholar" class=yCAF>BL Direct</a> - <a href="/scholar?cluster=6485600210150450152&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 11 versions</a> - <a href="/scholar.bib?q=info:6GM3aQd7AVoJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=73">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://cid.oxfordjournals.org/content/11/Supplement_4/S830.short" class=yCB0>Antibody, macrophages, <b>dengue </b>virus infection, shock, and hemorrhage: a pathogenetic cascade</a></h3></div><font size=-1><span class=gs_a>SB Halstead - Review of Infectious Diseases, 1989 - cid.oxfordjournals.org</span><br><b>...</b> designed and carried out with at- tention to technique and case definition, it should be possible<br>
+to answer many fundamental questions concerning the pathogenesis of hemorrhage in viral<br>
+hemorrhagic fevers in a highly available and ap- propriate <b>model</b>-<b>dengue</b> virus-infected <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=4373111743132276015&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 285</a> - <a href="/scholar?q=related:LxV97PVpsDwJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=4373111743132276015&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 4 versions</a> - <a href="/scholar.bib?q=info:LxV97PVpsDwJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=74">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://onlinelibrary.wiley.com/doi/10.1046/j.1365-3156.2001.00693.x/full" class=yCB1><b>Dengue </b>transmission risk maps of Argentina</a></h3></div><span class="gs_ggs gs_fl">  <a href="http://openurl.ebscohost.com/linksvc/linking.aspx?custid=ns017328&amp;sid=google&amp;auinit=AE&amp;aulast=Carbajo&amp;atitle=Dengue+transmission+risk+maps+of+Argentina&amp;title=Tropical+Medicine+%26+International+Health&amp;volume=6&amp;issue=3&amp;date=2001&amp;spage=170&amp;issn=1360-2276" class=yCB2>EBSCOhost Full Text</a></span><font size=-1><span class=gs_a>AE Carbajo, N Schweigmann, SI Curto&hellip; - Tropical Medicine &amp; &hellip;, 2001 - Wiley Online Library</span><br><b>...</b> Cambridge University Press, Cambridge, MA. 8 Focks DA, Daniels E, Haile DG &amp; Keesling JE<br>
+(1995) A simulation <b>model</b> of the epidemiology of urban <b>dengue</b> fever: literature analysis, <b>model</b><br>
+development, preliminary validation, and samploes of simulation results. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=14980289145522446204&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 49</a> - <a href="/scholar?q=related:fF-B35ut5M8J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/4D/25/RN093243286.html?source=googlescholar" class=yCB3>BL Direct</a> - <a href="/scholar?cluster=14980289145522446204&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 5 versions</a> - <a href="/scholar.bib?q=info:fF-B35ut5M8J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=75">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0277953600004433" class=yCB4>An investigation into the cyclical incidence of <b>dengue </b>fever</a></h3></div><font size=-1><span class=gs_a>J Keating - Social Science &amp; Medicine, 2001 - Elsevier</span><br><b>...</b> A residual analysis reveals positive autocorrelation, thus weakening the <b>model&#39;s</b> power to predict<br>
+monthly <b>dengue</b> incidence. <b>...</b> This <b>model</b> tested one independent variable (monthly mean<br>
+temperature) against the dependent variable (monthly <b>dengue</b> incidence reported). <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=4500195057081480885&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 50</a> - <a href="/scholar?q=related:tXZPtY_ncz4J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/0B/0D/RN104159266.html?source=googlescholar" class=yCB5>BL Direct</a> - <a href="/scholar?cluster=4500195057081480885&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:tXZPtY_ncz4J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=76">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0001706X07001271" class=yCB6>Weather as an effective predictor for occurrence of <b>dengue </b>fever in Taiwan</a></h3></div><font size=-1><span class=gs_a>PC Wu, HR Guo, SC Lung, CY Lin&hellip; - Acta Tropica, 2007 - Elsevier</span><br><b>...</b> early warning and disease prevention program. In this study, we applied a time-series<br>
+<b>model</b> to examine the association between weather variability and the occurrence<br>
+of <b>dengue</b> fever. We hope this approach can be considered <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=1895070508884477301&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 48</a> - <a href="/scholar?q=related:dcVgWpakTBoJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=1895070508884477301&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 7 versions</a> - <a href="/scholar.bib?q=info:dcVgWpakTBoJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=77">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ajtmh.org/content/72/1/67.short" class=yCB7>Elimination of <b>dengue </b>by community programs using Mesocyclops (Copepoda) against Aedes aegypti in central Vietnam</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ajtmh.org/content/72/1/67.full" class=yCB8><span class=gs_ctg2>[HTML]</span> from ajtmh.org</a></span><font size=-1><span class=gs_a>VS Nam, NT Yen, TV Phong, TU Ninh&hellip; - The American journal of  &hellip;, 2005 - ASTMH</span><br><b>...</b> The community-based <b>dengue</b> control <b>model</b> using Mesocyclops has been replicated<br>
+and expanded in other areas in Vietnam both under the National <b>Dengue</b> Control<br>
+Program and with some support from external donors. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=1614343799533129980&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 44</a> - <a href="/scholar?q=related:_NCG7CFNZxYJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=1614343799533129980&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 12 versions</a> - <a href="/scholar.bib?q=info:_NCG7CFNZxYJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=78">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0065308X05620064" class=yCB9>The global distribution of yellow fever and <b>dengue</b></a></h3></div><span class="gs_ggs gs_fl"><a href="http://users.ox.ac.uk/~hay/075e.pdf" class=yCBA><span class=gs_ctg2>[PDF]</span> from ox.ac.uk</a></span><font size=-1><span class=gs_a>DJ Rogers, AJ Wilson, SI Hay&hellip; - Advances in Parasitology, 2006 - Elsevier</span><br><b>...</b> Yellow Fever Data 3.4. <b>Dengue</b> Fever Data 3.5. Environmental Data from Satellites 3.6. The<br>
+Modelling Approach 4. Results 4.1. Risk Maps for Yellow Fever and <b>Dengue</b> 4.2. Overall <b>Model</b><br>
+Accuracy 4.3. Importance of Individual Variables 4.4. Variability of Bootstrap Results 4.5. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=1026326820041853260&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 32</a> - <a href="/scholar?q=related:TAkNHM4-Pg4J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=1026326820041853260&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:TAkNHM4-Pg4J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=79">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.bmj.com/content/324/7353/1563.short" class=yCBB><b>Dengue</b>: an escalating problem</a></h3></div><span class="gs_ggs gs_fl"><a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1123504/" class=yCBC><span class=gs_ctg2>[HTML]</span> from nih.gov</a></span><font size=-1><span class=gs_a>RV Gibbons&hellip; - Bmj, 2002 - bmj.com</span><br><b>...</b> The lack of a <b>dengue</b> animal <b>model</b> has been an obstacle in vaccine development. Also,<br>
+safety and efficacy tests on <b>dengue</b> vaccines must consider antibody dependent<br>
+enhancement, thus necessitating the development of a tetravalent vaccine. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=7235917933330160740&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 331</a> - <a href="/scholar?q=related:ZNwF2AUla2QJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/20/27/RN115251960.html?source=googlescholar" class=yCBD>BL Direct</a> - <a href="/scholar?cluster=7235917933330160740&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 20 versions</a> - <a href="/scholar.bib?q=info:ZNwF2AUla2QJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=80">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0960077907001567" class=yCBE>Lyapunov functions for a <b>dengue </b>disease transmission <b>model</b></a></h3></div><font size=-1><span class=gs_a>JJ Tewa, JL Dimi&hellip; - Chaos, Solitons &amp; Fractals, 2009 - Elsevier</span><br>In this paper, we study a <b>model </b>for the dynamics of <b>dengue </b>fever when only one type of virus <br>is present. For this <b>model</b>, Lyapunov functions are used to show that when the basic <br>reproduction ratio is less than or equal to one, the disease-free equilibrium is globally <b> ...</b><br><span class=gs_fl><a href="/scholar?cites=12607133102240875480&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 7</a> - <a href="/scholar?q=related:2MMi08KI9a4J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=12607133102240875480&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 3 versions</a> - <a href="/scholar.bib?q=info:2MMi08KI9a4J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=81">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.jbc.org/content/279/47/48535.short" class=yCBF>Enzymatic characterization and homology <b>model </b>of a catalytically active recombinant West Nile virus NS3 protease</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.jbc.org/content/279/47/48535.full" class=yCC0><span class=gs_ctg2>[HTML]</span> from jbc.org</a></span><font size=-1><span class=gs_a>TA Nall, KJ Chappell, MJ Stoermer, NX Fang&hellip; - Journal of Biological  &hellip;, 2004 - ASBMB</span><br><b>...</b> the generation of the <b>model</b>. Studies by Brinkworth et al. (25) elucidated a <b>model</b><br>
+of <b>Dengue</b> virus NS3 protease based on the HCV NS3 protease crystal structure,<br>
+despite low sequence identity. This has since been confirmed <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=14222520936516093598&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 52</a> - <a href="/scholar?q=related:ngaZB3CLYMUJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/54/41/RN159089883.html?source=googlescholar" class=yCC1>BL Direct</a> - <a href="/scholar?cluster=14222520936516093598&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:ngaZB3CLYMUJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=82">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S1386653205001721" class=yCC2>Distinguishing <b>dengue </b>fever from other infections on the basis of simple clinical and laboratory features: application of logistic regression analysis</a></h3></div><font size=-1><span class=gs_a>D Chadwick, B Arch, A Wilder-Smith&hellip; - Journal of clinical virology, 2006 - Elsevier</span><br><b>...</b> To simplify the predictive regression <b>model</b> further, we found all the combinations of clinical<br>
+features (of those included in the chosen <b>model</b>) that would lead to a diagnosis of <b>dengue</b><br>
+fever. This was translated into a simple decision rule. 4. Results. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=970645705033960510&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 39</a> - <a href="/scholar?q=related:PsxOQyBteA0J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=970645705033960510&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 7 versions</a> - <a href="/scholar.bib?q=info:PsxOQyBteA0J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=83">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.nature.com/nature/journal/v265/n5596/abs/265739a0.html" class=yCC3>Antibody-enhanced <b>dengue </b>virus infection in primate leukocytes</a></h3></div><font size=-1><span class=gs_a>SB Halstead&hellip; - 1977 - nature.com</span><br><b>...</b> Here we describe the in vitro enhancement of <b>dengue</b> infection in PBL by antibody. This system<br>
+provides a provisional <b>model</b> for DSS in young infants during primary <b>dengue</b> infections 7,8 .<br>
+References 1. Halstead, SB Yale J. Biol. Med. 42, 350–362 (1970). <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=9216260700400323202&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 214</a> - <a href="/scholar?q=related:ggrB9Ea85n8J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=9216260700400323202&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 4 versions</a> - <a href="/scholar.bib?q=info:ggrB9Ea85n8J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=84">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0264410X00001055" class=yCC4>A <b>dengue </b>virus serotype-1 DNA vaccine induces virus neutralizing antibodies and provides protection from viral challenge in Aotus monkeys</a></h3></div><font size=-1><span class=gs_a>TJ Kochel, K Raviprakash, CG Hayes, DM Watts&hellip; - Vaccine, 2000 - Elsevier</span><br><b>...</b> All previously reported <b>dengue</b> vaccine trials have utilized the Rhesus monkey <b>model</b>.<br>
+In that <b>model</b>, <b>dengue</b> naïve animals are susceptible to <b>dengue</b> virus infection but no<br>
+obvious clinical signs occur. Infection is monitored by viremia. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=6547239257753012113&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 72</a> - <a href="/scholar?q=related:kUfciWp33FoJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/40/2E/RN080081108.html?source=googlescholar" class=yCC5>BL Direct</a> - <a href="/scholar?cluster=6547239257753012113&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:kUfciWp33FoJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=85">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.annualreviews.org/doi/abs/10.1146/annurev.micro.62.081307.163005" class=yCC6>Global spread and persistence of <b>dengue</b></a></h3></div><span class="gs_ggs gs_fl"><a href="http://people.ufpr.br/~microgeral/arquivos/pdf/pdf/Fundamentos%202009/2010/Dengue.pdf" class=yCC7><span class=gs_ctg2>[PDF]</span> from ufpr.br</a></span><font size=-1><span class=gs_a>JL Kyle&hellip; - Annu. Rev. Microbiol., 2008 - annualreviews.org</span><br><b>...</b> With their past successes, Singapore and Cuba had long been considered to have<br>
+<b>model</b> <b>dengue</b> control programs, owing in part to their unique political and<br>
+geographical situations. These two countries implemented consistent <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=17434023998395342842&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 137</a> - <a href="/scholar?q=related:-l_9BXUY8vEJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=17434023998395342842&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 5 versions</a> - <a href="/scholar.bib?q=info:-l_9BXUY8vEJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=86">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://cmr.asm.org/cgi/content/full/11/3/480?view=long&amp;pmid=9665979" class=yCC8><b>Dengue </b>and <b>dengue </b>hemorrhagic fever</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC88892/" class=yCC9><span class=gs_ctg2>[HTML]</span> from nih.gov</a></span><font size=-1><span class=gs_a>DJ Gubler - Clinical microbiology reviews, 1998 - Am Soc Microbiol</span><br><b>...</b> In summary, available evidence suggests that both viral and host immune factors are involved<br>
+in the pathogenesis of severe <b>dengue</b> disease. Unfortunately, the role of each is not fully<br>
+understood and the lack of an animal <b>model</b> makes this a difficult area to study. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=565866992529617265&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 1271</a> - <a href="/scholar?q=related:cbHYFwhd2gcJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/5C/3A/RN047097472.html?source=googlescholar" class=yCCA>BL Direct</a> - <a href="/scholar?cluster=565866992529617265&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 9 versions</a> - <a href="/scholar.bib?q=info:cbHYFwhd2gcJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=87">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.springerlink.com/index/L618677705577364.pdf" class=yCCB>Sensitivity of malaria, schistosomiasis and <b>dengue </b>to global warming</a></h3></div><font size=-1><span class=gs_a>WJM Martens, TH Jetten&hellip; - Climatic Change, 1997 - Springer</span><br><b>...</b> In the case of <b>dengue</b> a more detailed enzyme kinetics <b>model</b> is available to describe<br>
+the relation between temperature and extrinsic cycle of <b>dengue</b> (DEN) Flaviviruses,<br>
+and that between temperature and blood digestion [12]. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=9229491512931675053&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 145</a> - <a href="/scholar?q=related:rWvGjaG9FYAJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/53/41/RN022414367.html?source=googlescholar" class=yCCC>BL Direct</a> - <a href="/scholar?cluster=9229491512931675053&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:rWvGjaG9FYAJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=88">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://oem.bmj.com/content/67/5/307.abstract" class=yCCD><b>Dengue </b>fever and El Niño/Southern Oscillation in Queensland, Australia: a time series predictive <b>model</b></a></h3></div><font size=-1><span class=gs_a>W Hu, A Clements, G Williams&hellip; - &hellip; and environmental medicine, 2010 - oem.bmj.com</span><br>Methods Data on the Southern Oscillation Index (SOI), an indicator of El Niño/Southern Oscillation <br>
+activity, were obtained from the Australian Bureau of Meteorology. Numbers of <b>dengue</b> fever <br>
+cases notified and the numbers of postcode areas with <b>dengue</b> fever cases between <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=1297547567510109536&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 10</a> - <a href="/scholar?q=related:YL2cUKPQARIJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=1297547567510109536&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:YL2cUKPQARIJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=89">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><span class=gs_ctc>[PDF]</span> <a href="http://umanitoba.ca/faculties/medicine/units/medical_microbiology/courses/MicroPath97.705/PDF/nm887.pdf" class=yCCE>Original antigenic sin and apoptosis in the pathogenesis of <b>dengue </b>hemorrhagic fever</a></h3></div><span class="gs_ggs gs_fl"><a href="http://umanitoba.ca/faculties/medicine/units/medical_microbiology/courses/MicroPath97.705/PDF/nm887.pdf" class=yCCF><span class=gs_ctg2>[PDF]</span> from umanitoba.ca</a></span><font size=-1><span class=gs_a>J Mongkolsapaya, W Dejnirattisai, X Xu&hellip; - Nature  &hellip;, 2003 - umanitoba.ca</span><br><b>...</b> <b>dengue</b> vaccine. These efforts have been hampered by two major factors: first, the<br>
+lack of an animal <b>model</b> for severe <b>dengue</b> infection, and second, the epidemiological<br>
+evidence for secondary infection in severe <b>dengue</b>. A better <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=12376791114295166958&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 283</a> - <a href="/scholar?q=related:7kfGgvExw6sJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/5D/32/RN133967277.html?source=googlescholar" class=yCD0>BL Direct</a> - <a href="/scholar?cluster=12376791114295166958&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 13 versions</a> - <a href="/scholar.bib?q=info:7kfGgvExw6sJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=90">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ajtmh.org/content/71/5/646.short" class=yCD1>Household survey of <b>dengue </b>infection in central Brazil: spatial point pattern analysis and risk factors assessment</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ajtmh.org/content/71/5/646.full" class=yCD2><span class=gs_ctg2>[HTML]</span> from ajtmh.org</a></span><font size=-1><span class=gs_a>JB Siqueira, CMT Martelli, IJ Maciel&hellip; - The American journal of  &hellip;, 2004 - ASTMH</span><br><b>...</b> Table 3 Multivariate logistic <b>model</b> for <b>dengue</b> virus infection using<br>
+individual and area-based potential risk factors. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=12915168323905271034&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 56</a> - <a href="/scholar?q=related:-jTAwCnlO7MJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/5F/18/RN160065926.html?source=googlescholar" class=yCD3>BL Direct</a> - <a href="/scholar?cluster=12915168323905271034&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 4 versions</a> - <a href="/scholar.bib?q=info:-jTAwCnlO7MJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=91">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://iopscience.iop.org/1748-9326/4/1/014011" class=yCD4>El Niño southern oscillation and vegetation dynamics as predictors of <b>dengue </b>fever cases in Costa Rica</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2745182/" class=yCD5><span class=gs_ctg2>[HTML]</span> from nih.gov</a></span><font size=-1><span class=gs_a>DO Fuller, A Troyo&hellip; - Environmental Research Letters, 2009 - iopscience.iop.org</span><br><b>...</b> In its current form it may be used to inform national vector control programs and policies regarding<br>
+control measures; it is the first climate-based <b>dengue</b> <b>model</b> developed for this country and is<br>
+potentially scalable to the broader region of Latin America and the Caribbean where <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=1091946872283519111&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 13</a> - <a href="/scholar?q=related:h9gOHOVfJw8J:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=1091946872283519111&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:h9gOHOVfJw8J:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=92">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://aje.oxfordjournals.org/content/133/11/1168.short" class=yCD6>Determinants and predictors of <b>dengue </b>infection in Mexico</a></h3></div><font size=-1><span class=gs_a>JS Koopman, DR Prevots, MAV Mann&hellip; - American Journal of  &hellip;, 1991 - Oxford Univ Press</span><br><b>...</b> This serosurvey was designed such that it would be possible to examine the effects of household<br>
+and ecologic factors on seroprevalence within communities, as well as to construct a <b>model</b> that<br>
+could be used to predict the risk of severe <b>dengue</b> epidemics at a national level. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=12254192846004248790&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 134</a> - <a href="/scholar?q=related:1mA3y3ejD6oJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=12254192846004248790&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:1mA3y3ejD6oJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=93">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><span class=gs_ctc>[PDF]</span> <a href="http://203.90.70.117/PDS_DOCS/B0639.pdf#page=115" class=yCD7>The use of GIS in ovitrap monitoring for <b>dengue </b>control in Singapore</a></h3></div><span class="gs_ggs gs_fl"><a href="http://203.90.70.117/PDS_DOCS/B0639.pdf#page=115" class=yCD8><span class=gs_ctg2>[PDF]</span> from 203.90.70.117</a></span><font size=-1><span class=gs_a>GT Ai-leen&hellip; - <b>Dengue </b>Bull, 2000 - 203.90.70.117</span><br><b>...</b> A greater understanding of the vectors would bring us a step closer to eradicating <b>dengue</b> fever<br>
+in Singapore. Figure 4 The inset shows the inactive ovitrap <b>model</b> where we select the output<br>
+file as “Total density 2000” which stores the breeding data, week 1 to 52, larval density <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=4149775660495699204&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 25</a> - <a href="/scholar?q=related:BH1oDfr2ljkJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://scholar.googleusercontent.com/scholar?q=cache:BH1oDfr2ljkJ:scholar.google.com/+Dengue++model&amp;hl=en&amp;num=100&amp;as_sdt=0,5">View as HTML</a> - <a href="/scholar?cluster=4149775660495699204&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 5 versions</a> - <a href="/scholar.bib?q=info:BH1oDfr2ljkJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=94">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.ncbi.nlm.nih.gov/pubmed/1617166" class=yCD9>Immunity and immunopathology in <b>dengue </b>virus infections.</a></h3></div><font size=-1><span class=gs_a>I Kurane&hellip; - Seminars in immunology, 1992 - ncbi.nlm.nih.gov</span><br><b>...</b> Host immune responses are also important for controlling <b>dengue</b> virus infection. Therefore,<br>
+<b>dengue</b> virus infections are an interesting <b>model</b> to explore the interactions between viruses and<br>
+the immune system which result in immunopathology or recovery from infection. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=1840102304962593471&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 124</a> - <a href="/scholar?q=related:v0KsDUxbiRkJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar.bib?q=info:v0KsDUxbiRkJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=95">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.pnas.org/content/101/10/3414.short" class=yCDA>Solution structure of <b>dengue </b>virus capsid protein reveals another fold</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.pnas.org/content/101/10/3414.long" class=yCDB><span class=gs_ctg2>[HTML]</span> from pnas.org</a></span><font size=-1><span class=gs_a>L Ma, CT Jones, TD Groesch&hellip; - Proceedings of the  &hellip;, 2004 - National Acad Sciences</span><br><b>...</b> the molecule. We propose a <b>model</b> for the interaction of <b>dengue</b> C protein with RNA<br>
+and the viral membrane that is based on the asymmetric charge distribution of the<br>
+protein and is consistent with previously reported results. <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=17513488378348964443&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 99</a> - <a href="/scholar?q=related:WwpsweNoDPMJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/05/36/RN146590753.html?source=googlescholar" class=yCDC>BL Direct</a> - <a href="/scholar?cluster=17513488378348964443&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 13 versions</a> - <a href="/scholar.bib?q=info:WwpsweNoDPMJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=96">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.sciencedirect.com/science/article/pii/S0035920302903718" class=yCDD>The seasonal pattern of <b>dengue </b>in endemic areas: mathematical models of mechanisms</a></h3></div><span class="gs_ggs gs_fl"><a href="http://veg.sage.wisc.edu/~zaks/sho/PDFs/Bartley%202002%20mosquito%20model%20dengue.pdf" class=yCDE><span class=gs_ctg2>[PDF]</span> from wisc.edu</a></span><font size=-1><span class=gs_a>LM Hartley, CA Donnelly&hellip; - Transactions of the royal society of  &hellip;, 2002 - Elsevier</span><br><b>...</b> These have been used in a complex dynamic life table simulation of A. aegypti to generate<br>
+entomological input for a <b>dengue</b> transmission <b>model</b>. <b>...</b> SEASONAL PATTERN OF <b>DENGUE</b> 395<br>
+that the <b>model</b> could not have generated the data (P 0001 in all cases). <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=5494470158783464501&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 39</a> - <a href="/scholar?q=related:NcRFm39HQEwJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://direct.bl.uk/research/5D/0B/RN126756008.html?source=googlescholar" class=yCDF>BL Direct</a> - <a href="/scholar?cluster=5494470158783464501&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:NcRFm39HQEwJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=97">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><span class=gs_ctc>[PDF]</span> <a href="http://www.mja.com.au/public/issues/190_05_020309/rus10887_fm.pdf" class=yCE0><b>Dengue </b>and climate change in Australia: predictions for the future should incorporate knowledge from the past</a></h3></div><span class="gs_ggs gs_fl"><a href="http://www.mja.com.au/public/issues/190_05_020309/rus10887_fm.pdf" class=yCE1><span class=gs_ctg2>[PDF]</span> from mja.com.au</a></span><font size=-1><span class=gs_a>RC Russell, BJ Currie, MD Lindsay, JS Mackenzie&hellip; - Med J Aust, 2009 - mja.com.au</span><br><b>...</b> As such, climate may have less of an influence on <b>dengue</b> than on other mosquito-borne<br>
+illnesses.12 The <b>dengue</b> climate <b>model</b> of Hales et al, often reported in Australia,2 analysed<br>
+climatic associations of global <b>dengue</b> outbreaks between 1975 and 1996; the authors noted <b>...</b> 
+<br><span class=gs_fl><a href="/scholar?cites=9795389170069886204&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 29</a> - <a href="/scholar?q=related:_FS5To028IcJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="http://scholar.googleusercontent.com/scholar?q=cache:_FS5To028IcJ:scholar.google.com/+Dengue++model&amp;hl=en&amp;num=100&amp;as_sdt=0,5">View as HTML</a> - <a href="/scholar?cluster=9795389170069886204&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 8 versions</a> - <a href="/scholar.bib?q=info:_FS5To028IcJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=98">Import into BibTeX</a></span></font>  </div>    <p><div class=gs_r><div class=gs_rt><h3><a href="http://www.nature.com/labinvest/www.nature.com/uidfinder/10.1038/labinvest.2008.70" class=yCE2>Liver injury caused by antibodies against <b>dengue </b>virus nonstructural protein 1 in a murine <b>model</b></a></h3></div><font size=-1><span class=gs_a>CF Lin, SW Wan, MC Chen, SC Lin&hellip; - Laboratory  &hellip;, 2008 - nature.com</span><br>Clinical manifestations of severe <b>dengue</b> diseases include thrombocytopenia, vascular <br>
+leakage, and liver damage. Evidence shows that hepatic injury is involved in the pathogenesis <br>
+of <b>dengue</b> infection; however, the mechanisms are not fully resolved. Our previous in vitro <b> ...</b> <br><span class=gs_fl><a href="/scholar?cites=8639743984118824525&amp;as_sdt=2005&amp;sciodt=0,5&amp;hl=en&amp;num=100">Cited by 8</a> - <a href="/scholar?q=related:TX6402CJ5ncJ:scholar.google.com/&amp;hl=en&amp;num=100&amp;as_sdt=0,5">Related articles</a> - <a href="/scholar?cluster=8639743984118824525&amp;hl=en&amp;num=100&amp;as_sdt=0,5">All 6 versions</a> - <a href="/scholar.bib?q=info:TX6402CJ5ncJ:scholar.google.com/&amp;output=citation&amp;hl=en&amp;num=100&amp;as_sdt=0,5&amp;ct=citation&amp;cd=99">Import into BibTeX</a></span></font>  </div>  <br><a href="/scholar_alerts?view_op=create_alert_options&amp;hl=en&amp;alert_query=allintitle:+Dengue++model&amp;alert_params=hl%3Den%26as_sdt%3D0,5"><span class="SPRITE_scholar_envelope" style="vertical-align:text-top" title="Create email alert"> </span></a>&nbsp;<a 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File scholar/scholar/spiders/scholar_spyder.py

 import string, random
 from itertools import cycle
 
-#os.environ['http_proxy'] = "127.0.0.1:8118"
+os.environ['http_proxy'] = "http://127.0.0.1:8118"
 
 class ScholarSpider(BaseSpider):
     name = "gscholar"
         self.num += 100
         print '==> ', self.num
         nxt_url = prv_url.replace('?', '?start=%s&'%self.num)
-        req = Request(nxt_url)
+        req = Request(nxt_url,cookies={'GSP':'ID=%s:CF=4'%self.id()},meta={'proxy':'http://127.0.0.1:8118','User-agent':self.user_agents.next()})
         yield req
 #            results.append(it)
 #        print results