Madrières, S.; Tatard, C.; Murri, S.; Vulin, J.; Galan, M.; Piry, S.; Pulido, C.; Loiseau, A.; Artige, E.; Benoit, L.;
et al. How Bank Vole-PUUV Interactions Influence the Eco-Evolutionary Processes Driving Nephropathia Epidemica Epidemiology—An Experimental and Genomic Approach. Pathogens 2020, 9, 789.
https://doi.org/10.3390/pathogens9100789
AMA Style
Madrières S, Tatard C, Murri S, Vulin J, Galan M, Piry S, Pulido C, Loiseau A, Artige E, Benoit L,
et al. How Bank Vole-PUUV Interactions Influence the Eco-Evolutionary Processes Driving Nephropathia Epidemica Epidemiology—An Experimental and Genomic Approach. Pathogens. 2020; 9(10):789.
https://doi.org/10.3390/pathogens9100789
Chicago/Turabian Style
Madrières, Sarah, Caroline Tatard, Séverine Murri, Johann Vulin, Maxime Galan, Sylvain Piry, Coralie Pulido, Anne Loiseau, Emmanuelle Artige, Laure Benoit,
and et al. 2020. "How Bank Vole-PUUV Interactions Influence the Eco-Evolutionary Processes Driving Nephropathia Epidemica Epidemiology—An Experimental and Genomic Approach" Pathogens 9, no. 10: 789.
https://doi.org/10.3390/pathogens9100789
APA Style
Madrières, S., Tatard, C., Murri, S., Vulin, J., Galan, M., Piry, S., Pulido, C., Loiseau, A., Artige, E., Benoit, L., Leménager, N., Lakhdar, L., Charbonnel, N., Marianneau, P., & Castel, G.
(2020). How Bank Vole-PUUV Interactions Influence the Eco-Evolutionary Processes Driving Nephropathia Epidemica Epidemiology—An Experimental and Genomic Approach. Pathogens, 9(10), 789.
https://doi.org/10.3390/pathogens9100789