Influenza viruses undergo continual antigenic evolution allowing mutant viruses to evade host immunity acquired to previous virus strains. Antigenic phenotype is often assessed through pairwise measurement of cross-reactivity between influenza strains using the hemagglutination inhibition (HI) assay. Here, we extend previous approaches to antigenic cartography, and simultaneously characterize antigenic and genetic evolution by modeling the diffusion of antigenic phenotype over a shared virus phylogeny. Using HI data from influenza lineages A/H3N2, A/H1N1, B/Victoria and B/Yamagata, we determine patterns of antigenic drift across viral lineages, showing that A/H3N2 evolves faster and in a more punctuated fashion than other influenza lineages...
Human seasonal influenza viruses evolve rapidly, enabling the virus population to evade immunity and...
Human seasonal influenza viruses evolve rapidly, enabling the virus population to evade immunity and...
The seasonal influenza A virus undergoes rapid evolution to escape human immune response. Adaptive c...
Influenza viruses undergo continual antigenic evolution allowing mutant viruses to evade host immuni...
Influenza viruses undergo continual antigenic evolution allowing mutant viruses to evade host immuni...
Influenza viruses undergo continual antigenic evolution allowing mutant viruses to evade host immuni...
Influenza viruses undergo continual antigenic evolution allowing mutant viruses to evade host immuni...
Influenza viruses undergo continual antigenic evolution allowing mutant viruses to evade host immuni...
Influenza viruses undergo continual antigenic evolution allowing mutant viruses to evade host immuni...
Under selective pressure from the host immune system, antigenic epitopes of influenza virus hemagglu...
ABSTRACT The seasonal influenza A virus undergoes rapid evolution to escape human immune response. A...
Abstract Background Since its emergence in 1968, infl...
Influenza viruses are a major cause of morbidity and mortality worldwide, with seasonal epidemics of...
The Pandemic (H1N1) 2009 is spreading to numerous countries and causing many human deaths. Although ...
Human seasonal influenza viruses evolve rapidly, enabling the virus population to evade immunity and...
Human seasonal influenza viruses evolve rapidly, enabling the virus population to evade immunity and...
Human seasonal influenza viruses evolve rapidly, enabling the virus population to evade immunity and...
The seasonal influenza A virus undergoes rapid evolution to escape human immune response. Adaptive c...
Influenza viruses undergo continual antigenic evolution allowing mutant viruses to evade host immuni...
Influenza viruses undergo continual antigenic evolution allowing mutant viruses to evade host immuni...
Influenza viruses undergo continual antigenic evolution allowing mutant viruses to evade host immuni...
Influenza viruses undergo continual antigenic evolution allowing mutant viruses to evade host immuni...
Influenza viruses undergo continual antigenic evolution allowing mutant viruses to evade host immuni...
Influenza viruses undergo continual antigenic evolution allowing mutant viruses to evade host immuni...
Under selective pressure from the host immune system, antigenic epitopes of influenza virus hemagglu...
ABSTRACT The seasonal influenza A virus undergoes rapid evolution to escape human immune response. A...
Abstract Background Since its emergence in 1968, infl...
Influenza viruses are a major cause of morbidity and mortality worldwide, with seasonal epidemics of...
The Pandemic (H1N1) 2009 is spreading to numerous countries and causing many human deaths. Although ...
Human seasonal influenza viruses evolve rapidly, enabling the virus population to evade immunity and...
Human seasonal influenza viruses evolve rapidly, enabling the virus population to evade immunity and...
Human seasonal influenza viruses evolve rapidly, enabling the virus population to evade immunity and...
The seasonal influenza A virus undergoes rapid evolution to escape human immune response. Adaptive c...