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  • [1]

    Chun-Yan Guo, Hai-Xiang Zhang, Jun-Jun Zhang, Li-Jun Sun, Hui-Jin Li, Dao-Yan Liang, Qing Feng, Yan Li, Yang-Meng Feng, Xin Xie, Jun Hu, 2019: Localization Analysis of Heterophilic Antigen Epitopes of H1N1 Influenza Virus Hemagglutinin, Virologica Sinica, 34, 306-314. doi: 10.1007/s12250-019-00100-9

  • [2]

    Yining He, Zhiwen Xie, Jinglong Dai, Yanjie Cao, Jinlian Hou, Yansheng Zheng, Tianchao Wei, Meilan Mo, Ping Wei, 2016: Responses of the Toll-like receptor and melanoma differentiation-associated protein 5 signaling pathways to avian infectious bronchitis virus infection in chicks, Virologica Sinica, 31, 57-68. doi: 10.1007/s12250-015-3696-y

  • [3]

    Jia Chen, Cao Chen, Chao Hu, Lian Liu, Ying Xia, Lin Wang, Wei Yang, Hai-Yan Wu, Wei Zhou, Kang Xiao, Qi Shi, Yuezhang Wu, Zhi-Bao Chen, Xiao-Ping Dong, 2020: IP10, KC and M-CSF Are Remarkably Increased in the Brains from the Various Strains of Experimental Mice Infected with Different Scrapie Agents, Virologica Sinica, 35, 614-625. doi: 10.1007/s12250-020-00216-3

  • [4]

    Luisa Fernanda Mancipe Jiménez, Gloria Ramírez Nieto, Victor Vera Alfonso, Jairo Jaime Correa, 2014: Association of swine influenza H1N1 pandemic virus (SIVH1N1p) with porcine respiratory disease complex in sows from commercial pig farms in Colombia, Virologica Sinica, 29, 242-249. doi: 10.1007/s12250-014-3471-5

  • [5]

    季晓辉, 姚堃, 李焕娣, 周瑶玺, 1996: Effect of cytokines on the infection of monocyte - macrophages with HSV- 1, Virologica Sinica, 11, 251-.

  • [6]

    邓 刚, 莎日娜, 母俊杰, 乔文涛, 耿运琪, 陈启民*, 2004: JDV Tat Transactivate LTR Involves Similar Cytokines as HIV-1 Tat, Virologica Sinica, 19, 576-581.

  • [7]

    Lehao Ren, Wanju Zhang, Jing Zhang, Jiaxiang Zhang, Huiying Zhang, Yong Zhu, Xiaoxiao Meng, Zhigang Yi, Ruilan Wang, 2021: Influenza A Virus (H1N1) Infection Induces Glycolysis to Facilitate Viral Replication, Virologica Sinica, 36, 1532-1542. doi: 10.1007/s12250-021-00433-4

  • [8]

    Xuanxuan Li, Zefeng Dong, Jiaming Li, Chuanran Dou, Deyu Tian, Zhenghai Ma, Wenjun Liu, George F. Gao, Yuhai Bi, 2024: Genetic characteristics of H1N1 influenza virus outbreak in China in early 2023, Virologica Sinica, 39, 520-523. doi: 10.1016/j.virs.2024.05.003

  • [9]

    Arun Pate, Kaushal Kishor Rajak, Vinayagamurthy Balamurugan, Arnab Sen, Shashi Bhusan Sudhakar, Veerakyathappa Bhanuprakash, Raj Kumar Singh, Awadh Bihari Pandey, 2012: Cytokines Expression Profile and Kinetics of Peste des petits ruminants Virus Antigen and Antibody in Infected and Vaccinated Goats, Virologica Sinica, 27, 265-271. doi: 10.1007/s12250-012-3240-2

  • [10]

    Karpova L S, Popovtseva N M, Stolyarova T P, Stolyarov K A, Mamadaliyev S M, Khairullin B M, Sandybayev N T, Kydyrbayev Zh K, Orynbayev M B, Ospanov K S, Baiserkin B S, Boibosinov E U, 2011: Comparison of Influenza Outbreaks in the Republic of Kazakhstan and Russia Induced by 2009 Yearly New Variant of А(H1N1) Influenza Virus, Virologica Sinica, 26, 306-314. doi: 10.1007/s12250-011-3203-z

  • [11]

    Tran Bac Le, In Hong Lee, Byung Jun Kim, Hyun Soo Kim, Sang Heui Seo, 2016: Detection and pathogenesis of a novel swine H3N2 influenza virus containing three genes from the 2009 pandemic H1N1 influenza viruses in Korea in 2015, Virologica Sinica, 31, 513-516. doi: 10.1007/s12250-016-3848-8

  • [12]

    Jian-Feng Xie, Yan-Hua Zhang, Lin Zhao, Wen-Qiong Xiu, Hong-Bin Chen, Qi Lin, Yu-Wei Weng, Kui-Cheng Zheng, 2018: Emergence of Eurasian Avian-Like Swine Influenza A (H1N1) Virus from an Adult Case in Fujian Province, China, Virologica Sinica, 33, 282-286. doi: 10.1007/s12250-018-0034-1

  • [13]

    Tetiana Krupodorova, Svetlana Rybalko, Victor Barshteyn, 2014: Antiviral activity of Basidiomycete mycelia against influenza type A (serotype H1N1) and herpes simplex virus type 2 in cell culture, Virologica Sinica, 29, 284-290. doi: 10.1007/s12250-014-3486-y

  • [14]

    Shuaiyong Wang, Manzhu Wang, Lingxue Yu, Juan Wang, Jiecong Yan, Xinli Rong, Yanjun Zhou, Tongling Shan, Wu Tong, Guoxin Li, Hao Zheng, Guangzhi Tong, Hai Yu, 2022: Genetic characterization and pathogenicity of a reassortant Eurasian avian-like H1N1 swine influenza virus containing an internal gene cassette from 2009 pandemic H1N1 virus, Virologica Sinica, 37, 627-630. doi: 10.1016/j.virs.2022.04.009

  • [15]

    Mingkun Wu, Liru Guo, Mei Kong, Ming Zou, Xiaochang Liu, Xiaoyan Li, 2025: Epidemiological and genomic surveillance of influenza A virus (pdm09 H1N1 and H3N2) strains from 2017 to 2025 in Tianjin, China, Virologica Sinica, 40, 535-545. doi: 10.1016/j.virs.2025.07.011

  • [16]

    Jiu-ru Zhao, Yong-dong Li, Li-min Pan, Na Zhu, Hong-xia Ni, Guo-zhang Xu, Yong-zhong Jiang, Xi-xiang Huo, Jun-qiang Xu, Han Xia, Na Han, Shuang Tang, Zhong Zhang, Zheng Kou, Simon Rayner, Tian-xian Li, 2011: Genetic Characteristics of 2009 Pandemic H1N1 Influenza A Viruses Isolated from Mainland China *, Virologica Sinica, 26, 418-427. doi: 10.1007/s12250-011-3228-3

  • [17]

    Zhaomin Feng, Wenfei Zhu, Lei Yang, Jia Liu, Lijuan Zhou, Dayan Wang, Yuelong Shu, 2021: Epidemiology and Genotypic Diversity of Eurasian Avian-Like H1N1 Swine Influenza Viruses in China, Virologica Sinica, 36, 43-51. doi: 10.1007/s12250-020-00257-8

  • [18]

    Mi Liu, Jingze Liu, Wenjun Song, Yousong Peng, Xiao Ding, Lizong Deng, Taijiao Jiang, 2023: Development of PREDAC-H1pdm to model the antigenic evolution of influenza A/(H1N1) pdm09 viruses, Virologica Sinica, 38, 541-548. doi: 10.1016/j.virs.2023.05.008

  • [19]

    Jaemoo Kim, Jungho Kim, Suhyeon Heo, Chang-Hun Yeom, Bao Tuan Duong, Haan Woo Sung, Seon-Ju Yeo, Hyun Park, Haryoung Poo, Jihyun Yang, 2025: A low pathogenic avian influenza A/Mallard/South Korea/KNU2019-34/2019 (H1N1) virus has the potential to increase the mammalian pathogenicity, Virologica Sinica, 40, 24-34. doi: 10.1016/j.virs.2024.12.005

  • [20]

    Zhu Yang, Guoliang Mao, Yujun Liu, Yuan-Chuan Chen, Chengjing Liu, Jun Luo, Xihan Li, Ke Zen, Yanjun Pang, Jianguo Wu, Fenyong Liu, 2013: Detection of the Pandemic H1N1/2009 Influenza A Virus by a Highly Sensitive Quantitative Real-time Reverse-transcription Polymerase Chain Reaction Assay, Virologica Sinica, 28, 24-35. doi: 10.1007/s12250-013-3290-0