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Development and evaluation of an easy to use real-time reverse-transcription loop-mediated isothermal amplification assay for clinical diagnosis of West Nile virus
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West Nile virus in India: An update on its genetic lineages
Loss of West Nile virus genetic diversity during mosquito infection due to species-dependent population bottlenecks
Emily A. Fitzmeyer, Emily N. Gallichotte, James Weger-Lucarelli, Marylee L. Kapuscinski, Zaid Abdo, Kyra Pyron, Michael C. Young and Gregory D. Ebel iScience 26(10) 107711 (2023) https://doi.org/10.1016/j.isci.2023.107711
A sero-epidemiological investigation of West Nile virus among patients without any records of their symptoms from three different hospitals from Tunisia
Nadya Nasraoui, Mouna Louisa Ben Moussa, Yosr Ayedi, Maha Mastouri, Abdelhalim Trabelsi, Ali Raies, Roman Wölfel and Mohamed Ben Moussa Acta Tropica 242 106905 (2023) https://doi.org/10.1016/j.actatropica.2023.106905
Establishment of a Culex tarsalis (Diptera: Culicidae) Cell Line and its Permissiveness to Arbovirus Infection
Erin E Schirtzinger, Dane C Jasperson, Dustin A Swanson, et al. Journal of Medical Entomology 60(1) 239 (2023) https://doi.org/10.1093/jme/tjac155
Ecological Niche Modeling of Aedes and Culex Mosquitoes: A Risk Map for Chikungunya and West Nile Viruses in Zambia
Seroepidemiological Survey of West Nile Virus Infections in Horses from Berlin/Brandenburg and North Rhine-Westphalia, Germany
Felicitas Bergmann, Dagmar S. Trachsel, Sabita D. Stoeckle, Joke Bernis Sierra, Stephan Lübke, Martin H. Groschup, Heidrun Gehlen and Ute Ziegler Viruses 14(2) 243 (2022) https://doi.org/10.3390/v14020243
Seroprevalence and Risk Factors for Equine West Nile Virus Infections in Eastern Germany, 2020
Stefanie Ganzenberg, Michael Sieg, Ute Ziegler, Martin Pfeffer, Thomas W. Vahlenkamp, Uwe Hörügel, Martin H. Groschup and Katharina L. Lohmann Viruses 14(6) 1191 (2022) https://doi.org/10.3390/v14061191
Global emergence of West Nile virus: Threat & preparedness in special perspective to India
Cerebral Organoids Derived from a Parkinson’s Patient Exhibit Unique Pathogenesis from Chikungunya Virus Infection When Compared to a Non-Parkinson’s Patient
Delineating Health and Health System: Mechanistic Insights into Covid 19 Complications
Priya Mishra and Naveen Kumar Arora Delineating Health and Health System: Mechanistic Insights into Covid 19 Complications 97 (2021) https://doi.org/10.1007/978-981-16-5105-2_4
Immunopathogenesis of Different Emerging Viral Infections: Evasion, Fatal Mechanism, and Prevention
How virus size and attachment parameters affect the temperature sensitivity of virus binding to host cells: Predictions of a thermodynamic model for arboviruses and HIV
The drivers of West Nile virus human illness in the Chicago, Illinois, USA area: Fine scale dynamic effects of weather, mosquito infection, social, and biological conditions
Strain-Dependent Activity of Zika Virus and Exposure History in Serological Diagnostics
Kelli L. Barr, Erika R. Schwarz, Dhani Prakoso, Kehkashan Imtiaz, Ruiyu Pu, J. Glenn Morris, Erum Khan and Maureen T. Long Tropical Medicine and Infectious Disease 5(1) 38 (2020) https://doi.org/10.3390/tropicalmed5010038
On the Fly: Interactions Between Birds, Mosquitoes, and Environment That Have Molded West Nile Virus Genomic Structure Over Two Decades
Aaron C Brault, Gregory D Ebel, Kate E Langwig, Nisha K Duggal and William Reisen Journal of Medical Entomology 56(6) 1467 (2019) https://doi.org/10.1093/jme/tjz112
The influence of weather and weather variability on mosquito abundance and infection with West Nile virus in Harris County, Texas, USA
Genetic Variations in Bionomics of Culex quinquefasciatus (Diptera: Culicidae) Mosquito Population in Minna, North Central Nigeria
Azubuike C. Ukubuiwe, Israel K. Olayemi and Aisha I. Jibrin International Journal of Insect Science 8 IJIS.S32516 (2016) https://doi.org/10.4137/IJIS.S32516
Estimating the economic impact of a possible equine and human epidemic of West Nile virus infection in Belgium
Wild Birds in Romania Are More Exposed to West Nile Virus Than to Newcastle Disease Virus
Anamaria Ioana Paştiu, Péter László Pap, Csongor István Vágási, et al. Vector-Borne and Zoonotic Diseases 16(3) 176 (2016) https://doi.org/10.1089/vbz.2015.1805
The tortoise or the hare? Impacts of within-host dynamics on transmission success of arthropod-borne viruses
Benjamin M. Althouse and Kathryn A. Hanley Philosophical Transactions of the Royal Society B: Biological Sciences 370(1675) 20140299 (2015) https://doi.org/10.1098/rstb.2014.0299
Epidemic Spread of Usutu Virus in Southwest Germany in 2011 to 2013 and Monitoring of Wild Birds for Usutu and West Nile Viruses
Henri Jupille, Anubis Vega-Rua, François Rougeon and Anna-Bella Failloux Future Virology 9(8) 733 (2014) https://doi.org/10.2217/fvl.14.62
Vector competence of Culex pipiens quinquefasciatus (Diptera: Culicidae) for West Nile virus isolates from Florida
Stephanie L. Richards, Sheri L. Anderson and Cynthia C. Lord Tropical Medicine & International Health 19(5) 610 (2014) https://doi.org/10.1111/tmi.12277
Characterization of West Nile virus (WNV) isolates from Assam, India: Insights into the circulating WNV in northeastern India
Pritom Chowdhury, Siraj Ahmed Khan, Prafulla Dutta, Rashmee Topno and Jagadish Mahanta Comparative Immunology, Microbiology and Infectious Diseases 37(1) 39 (2014) https://doi.org/10.1016/j.cimid.2013.10.006
West Nile Virus Genome with Glycosylated Envelope Protein and Deletion of Alpha Helices 1, 2, and 4 in the Capsid Protein Is Noninfectious and Efficiently Secretes Subviral Particles
Flaviviruses in Europe: Complex Circulation Patterns and Their Consequences for the Diagnosis and Control of West Nile Disease
Cécile Beck, Miguel Jimenez-Clavero, Agnès Leblond, Benoît Durand, Norbert Nowotny, Isabelle Leparc-Goffart, Stéphan Zientara, Elsa Jourdain and Sylvie Lecollinet International Journal of Environmental Research and Public Health 10(11) 6049 (2013) https://doi.org/10.3390/ijerph10116049
A Single Amino Acid Substitution in the Core Protein of West Nile Virus Increases Resistance to Acidotropic Compounds
Molecular Bases of Reproductive and Vectorial Fitness of Culex pipiens pipiens (Diptera: Culicidae) Mosquito Populations, for the Transmission of Filariasis in North Central Nigeria
Relationships Between Infection, Dissemination, and Transmission of West Nile Virus RNA inCulex pipiens quinquefasciatus(Diptera: Culicidae)
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La fiebre/encefalitis por virus West Nile: reemergencia en Europa y situación en España
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Pathogenicity of two recent Western Mediterranean West Nile virus isolates in a wild bird species indigenous to Southern Europe: the red-legged partridge
Pathology and Immunohistochemical Findings of West Nile Virus Infection in Psittaciformes
C. Palmieri, M. Franca, F. Uzal, M. Anderson, B. Barr, L. Woods, J. Moore, P. Woolcock and H. L. Shivaprasad Veterinary Pathology 48(5) 975 (2011) https://doi.org/10.1177/0300985810391112
Factors Associated With the Risk of West Nile Virus Among Crows in New York State
C. H. DeCarlo, A. B. Clark, K. J. McGowan, P. E. Ziegler, A. L. Glaser, B. Szonyi and H. O. Mohammed Zoonoses and Public Health 58(4) 270 (2011) https://doi.org/10.1111/j.1863-2378.2010.01346.x
Phylogenetic relationships of Western Mediterranean West Nile virus strains (1996–2010) using full-length genome sequences: single or multiple introductions?
Two New Real-Time Quantitative Reverse Transcription Polymerase Chain Reaction Assays with Unique Target Sites for the Specific and Sensitive Detection of Lineages 1 and 2 West Nile Virus Strains
Martin Eiden, Ariel Vina-Rodriguez, Bernd Hoffmann, Ute Ziegler and Martin H. Groschup Journal of Veterinary Diagnostic Investigation 22(5) 748 (2010) https://doi.org/10.1177/104063871002200515
The Analysis of Crow Population Dynamics as a Surveillance Tool
Characterization of West Nile virus isolates from Spain: New insights into the distinct West Nile virus eco-epidemiology in the Western Mediterranean
Elena Sotelo, Jovita Fernandez-Pinero, Francisco Llorente, Montserrat Agüero, Ursula Hoefle, Juan M. Blanco and Miguel A. Jiménez-Clavero Virology 395(2) 289 (2009) https://doi.org/10.1016/j.virol.2009.09.013