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Volume 26, Number 12—December 2020
Synopsis

Animal Rabies Surveillance, China, 2004–2018

Ye Feng1, Yuyang Wang1, Weidi Xu, Zhongzhong Tu, Tingfang Liu, Minghe Huo, Yan Liu, Wenjie Gong, Zheng Zeng, Wen Wang, Yinhong Wei, and Changchun TuComments to Author 
Author affiliations: Academy of Military Medical Sciences, Changchun, China (Y. Feng, Y. Wang, W. Xu, Z. Tu, T. Liu, M. Huo, Y. Liu, W. Gong, C. Tu); Jilin Agricultural University, Changchun (W. Xu, T. Liu); Jilin University College of Veterinary Medicine, Changchun (M. Huo, W. Gong); Center for Animal Disease Control and Prevention of Chongqing, Chongqing, China (Z. Zeng); Animal Health Inspection Institute of Xinjiang Uygur Autonomous Region, Urumqi, China (W. Wang); Center for Animal Disease Control and Prevention of Alxa Youqi, Alxa, China (Y. Wei); Jiangsu Co-Innovation Center for the Prevention and Control of Important Animal Infectious Disease and Zoonoses, Yangzhou University, Yangzhou, China (C. Tu)

Main Article

Figure 5

Proposed transboundary transmission of rabies viruses between China and neighboring countries determined by the Bayesian stochastic search variable selection approach. Unbroken lines: transmission events with a Bayes factor >3; broken line: transmission event with a Bayes factor <3. SEA, Southeast Asia.

Figure 5. Proposed transboundary transmission of rabies viruses between China and neighboring countries determined by the Bayesian stochastic search variable selection approach. Unbroken lines: transmission events with a Bayes factor >3; broken line: transmission event with a Bayes factor <3. SEA, Southeast Asia.

Main Article

1These authors contributed equally to this article.

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