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  <title>GIDS Research Radar · Yellow fever</title>
  <link>https://globalinfectiousdisease.com/research/</link>
  <description>Published infectious-disease literature filtered to Yellow fever.</description>
  <language>en</language>
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  <lastBuildDate>Wed, 09 Sep 2026 07:02:01 GMT</lastBuildDate>
  <item>
    <title>Emergence and phylogeography of the dengue vector Aedes aegypti in Southeastern Iran</title>
    <link>https://globalinfectiousdisease.com/research/articles/10-1371-journal-pntd-0014671-0a2f1ad1/</link>
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    <pubDate>Thu, 20 Aug 2026 00:00:00 GMT</pubDate>
    <description>The confirmed establishment of genetically diverse Ae. aegypti populations in southeastern Iran represents an emerging invasion corridor that elevates arbovirus transmission risk, including dengue, chikungunya, Zika, and yellow fever. The genetic connectivity with endemic regions in Latin America, Africa, and South Asia underscores the need for integrated vector monitoring and genomic surveillance to inform prevention strategies.</description>
    <category>Dengue</category>
    <category>Chikungunya</category>
    <category>Yellow fever</category>
    <category>Surveillance</category>
    <category>Genomic epidemiology</category>
    <category>Genomic study</category>
  </item>
  <item>
    <title>Systemic barriers to achieving yellow fever vaccination coverage targets among children aged 9–23 months in the Democratic Republic of the Congo</title>
    <link>https://globalinfectiousdisease.com/research/articles/10-1016-j-vaccine-2026-128995-ff19b743/</link>
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    <pubDate>Sat, 01 Aug 2026 00:00:00 GMT</pubDate>
    <description>The findings identify socioeconomic, seasonal, community-mobilization, and service-delivery factors relevant to yellow fever vaccination access in the studied DRC settings. The authors indicate that outreach, community mobilization, and adaptation of services to environmental conditions may support more equitable coverage.</description>
    <category>Yellow fever</category>
    <category>Vaccination</category>
    <category>Climate and environment</category>
    <category>Cross-sectional study</category>
  </item>
  <item>
    <title>Investigating antibody cross-reactivity and transmission dynamics of alphaviruses and flaviviruses using a multiplex serological assay</title>
    <link>https://globalinfectiousdisease.com/research/articles/10-1038-s41467-026-71451-7-b6985db2/</link>
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    <pubDate>Wed, 15 Apr 2026 00:00:00 GMT</pubDate>
    <description>The integrative approach demonstrates potential for improving arbovirus surveillance, especially in resource-limited settings where multiple viruses circulate and cross-reactivity hinders accurate diagnostics and transmission monitoring.</description>
    <category>Chikungunya</category>
    <category>West Nile virus</category>
    <category>Japanese Encephalitis</category>
    <category>Dengue</category>
    <category>Yellow fever</category>
    <category>Transmission dynamics</category>
    <category>Surveillance</category>
    <category>Diagnostics</category>
    <category>Journal article</category>
  </item>
  <item>
    <title>Reemergence of yellow fever virus in southeastern Brazil, 2017–2018: What sparked the spread?</title>
    <link>https://globalinfectiousdisease.com/research/articles/10-1371-journal-pntd-0010133-735c4644/</link>
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    <pubDate>Mon, 07 Feb 2022 00:00:00 GMT</pubDate>
    <description>Findings highlight drought and rural or outdoor exposure as plausible contributors to YFV reemergence in southeastern Brazilian states that had been YFV-free for nearly a century, underscoring environmental and demographic factors relevant to outbreak preparedness.</description>
    <category>Yellow fever</category>
    <category>Surveillance</category>
    <category>Outbreak investigation</category>
    <category>Transmission dynamics</category>
    <category>Climate and environment</category>
    <category>Travel medicine</category>
    <category>Journal article</category>
  </item>
  <item>
    <title>Spatial epidemiology of yellow fever: Identification of determinants of the 2016-2018 epidemics and at-risk areas in Brazil</title>
    <link>https://globalinfectiousdisease.com/research/articles/10-1371-journal-pntd-0008691-f7098107/</link>
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    <pubDate>Thu, 01 Oct 2020 00:00:00 GMT</pubDate>
    <description>The study provides an evidence-based framework for describing yellow fever spatial heterogeneity and developing risk maps in Brazil. Its findings indicate that spatial analyses considered by the article included ecological conditions, host-related factors, and social and epidemiological variables rather than climate variables alone.</description>
    <category>Yellow fever</category>
    <category>COVID-19</category>
    <category>One Health</category>
    <category>Outbreak investigation</category>
    <category>Transmission dynamics</category>
    <category>Vaccination</category>
    <category>Climate and environment</category>
    <category>Journal article</category>
  </item>
  <item>
    <title>The response to re-emergence of yellow fever in Nigeria, 2017</title>
    <link>https://globalinfectiousdisease.com/research/articles/10-1016-j-ijid-2019-12-034-3a04ef63/</link>
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    <pubDate>Sun, 01 Mar 2020 00:00:00 GMT</pubDate>
    <description>The outbreak prompted intensified yellow fever surveillance nationwide, reactive vaccination and social mobilization in affected areas, and initiation of a state-wide preventive campaign in Kwara State.</description>
    <category>Yellow fever</category>
    <category>Dengue</category>
    <category>Vaccination</category>
    <category>Outbreak investigation</category>
    <category>Surveillance</category>
    <category>Outbreak investigation</category>
  </item>
  <item>
    <title>Haemagogus leucocelaenus and Haemagogus janthinomys are the primary vectors in the major yellow fever outbreak in Brazil, 2016–2018</title>
    <link>https://globalinfectiousdisease.com/research/articles/10-1080-22221751-2019-1568180-c05f69af/</link>
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    <pubDate>Fri, 01 Feb 2019 00:00:00 GMT</pubDate>
    <description>The study is presented as relevant to identifying receptive areas and informing vaccination planning in affected and exposed populations. It also frames the findings as important for understanding outbreak spread in a region with long-term interruption of viral circulation.</description>
    <category>Yellow fever</category>
    <category>Malaria</category>
    <category>Outbreak investigation</category>
    <category>Transmission dynamics</category>
    <category>Vaccination</category>
    <category>Journal article</category>
  </item>
  <item>
    <title>Fatal Yellow Fever in Travelers to Brazil, 2018</title>
    <link>https://globalinfectiousdisease.com/research/articles/10-15585-mmwr-mm6711e1-5a9e5562/</link>
    <guid isPermaLink="true">https://globalinfectiousdisease.com/research/articles/10-15585-mmwr-mm6711e1-5a9e5562/</guid>
    <pubDate>Fri, 23 Mar 2018 00:00:00 GMT</pubDate>
    <description>The report underscores the importance of pre-travel yellow fever vaccination for travelers to outbreak-affected regions in Brazil, where the case fatality rate among those with severe illness ranges from 20% to 60%.</description>
    <category>Yellow fever</category>
    <category>Malaria</category>
    <category>Travel medicine</category>
    <category>Vaccination</category>
    <category>Outbreak investigation</category>
    <category>Journal article</category>
  </item>
  <item>
    <title>Spread of yellow fever virus outbreak in Angola and the Democratic Republic of the Congo 2015–16: a modelling study</title>
    <link>https://globalinfectiousdisease.com/research/articles/10-1016-s1473-3099-16-30513-8-b018160f/</link>
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    <pubDate>Wed, 01 Mar 2017 00:00:00 GMT</pubDate>
    <description>The findings provide estimates for prioritising areas for vaccination during yellow fever outbreaks and demonstrate the potential for predictive modelling to guide targeted vaccine allocation, though practical implementation would require consideration of vaccine supply and delivery constraints.</description>
    <category>Yellow fever</category>
    <category>Vaccination</category>
    <category>Travel medicine</category>
    <category>Outbreak investigation</category>
    <category>Transmission dynamics</category>
    <category>Health policy</category>
    <category>Mathematical modelling</category>
  </item>
  <item>
    <title>Yellow Fever Virus in Haemagogus leucocelaenus and Aedes serratus Mosquitoes, Southern Brazil, 2008</title>
    <link>https://globalinfectiousdisease.com/research/articles/10-3201-eid1612-100608-b6dbe654/</link>
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    <pubDate>Wed, 01 Dec 2010 00:00:00 GMT</pubDate>
    <description>The findings provide entomologic evidence relevant to yellow fever outbreak investigation and to surveillance activities intended for early virus detection. The abstract also places the work in the context of vaccination program support, without reporting vaccination effectiveness or population-level outcomes.</description>
    <category>Yellow fever</category>
    <category>Climate and environment</category>
    <category>Outbreak investigation</category>
    <category>Surveillance</category>
    <category>Vaccination</category>
    <category>Journal article</category>
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