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Emerging Microbes & Infections|August 8, 2023
The emergence of new antigen branches of H9N2 avian influenza virus in China due to antigenic drift on hemagglutinin through antibody escape at immunodominant sitesNan Zhang, Keji Quan, Zixuan Chen, et al.Viruses|December 9, 2020
Establishing a Multicolor Flow Cytometry to Characterize Cellular Immune Response in Chickens Following H7N9 Avian Influenza Virus InfectionXiaoli Hao, Shuai Li, Lina Chen, et al.Vaccine|November 30, 2010
Immunogenicity and protective efficacy of a live attenuated vaccine against the 2009 pandemic A H1N1 in mice and ferretsPengHui Yang, YueQiang Duan, Cheng Wang, et al.Advanced Materials (Deerfield Beach, Fla.)|January 12, 2024
Low-Temperature Adaptive Single-Atom Iron Nanozymes against Viruses in the Cold ChainTao Qin, Yulian Chen, Xinyu Miao, et al.Plos One|June 3, 2017
Multiplex one-step Real-time PCR by Taqman-MGB method for rapid detection of pan and H5 subtype avian influenza virusesZhujun Zhang, Dong Liu, Wenqiang Sun, et al.Frontiers in Veterinary Science|December 3, 2021
Single Dose of Bivalent H5 and H7 Influenza Virus-Like Particle Protects Chickens Against Highly Pathogenic H5N1 and H7N9 Avian Influenza VirusesJiao Hu, Peipei Peng, Jun Li, et al.Archives of Virology|January 24, 2019
Recombinant baculovirus vaccine expressing hemagglutinin of H7N9 avian influenza virus confers full protection against lethal highly pathogenic H7N9 virus infection in chickensJiao Hu, Yanyan Liang, Zenglei Hu, et al.Veterinary Research|January 13, 2021
N-linked glycosylation at site 158 of the HA protein of H5N6 highly pathogenic avian influenza virus is important for viral biological properties and host immune responsesRuyi Gao, Min Gu, Liwei Shi, et al.Frontiers in Veterinary Science|July 14, 2023
A novel triplex real-time PCR assay for the differentiation of lumpy skin disease virus, goatpox virus, and sheeppox virusWenlong Nan, Mingxia Gong, You Lu, et al.Journal of Virology|December 21, 2012
The PA-gene-mediated lethal dissemination and excessive innate immune response contribute to the high virulence of H5N1 avian influenza virus in miceJiao Hu, Zenglei Hu, Qingqing Song, et al.Pageof 18