Mao, W.; Wang, J.; Li, T.; Wu, J.; Wang, J.; Wen, S.; Huang, J.; Shi, Y.; Zheng, K.; Zhai, Y.;
et al. Hybrid Capture-Based Sequencing Enables Highly Sensitive Zoonotic Virus Detection Within the One Health Framework. Pathogens 2025, 14, 264.
https://doi.org/10.3390/pathogens14030264
AMA Style
Mao W, Wang J, Li T, Wu J, Wang J, Wen S, Huang J, Shi Y, Zheng K, Zhai Y,
et al. Hybrid Capture-Based Sequencing Enables Highly Sensitive Zoonotic Virus Detection Within the One Health Framework. Pathogens. 2025; 14(3):264.
https://doi.org/10.3390/pathogens14030264
Chicago/Turabian Style
Mao, Weiya, Jin Wang, Ting Li, Jiani Wu, Jiangrong Wang, Shubo Wen, Jicheng Huang, Yongxia Shi, Kui Zheng, Yali Zhai,
and et al. 2025. "Hybrid Capture-Based Sequencing Enables Highly Sensitive Zoonotic Virus Detection Within the One Health Framework" Pathogens 14, no. 3: 264.
https://doi.org/10.3390/pathogens14030264
APA Style
Mao, W., Wang, J., Li, T., Wu, J., Wang, J., Wen, S., Huang, J., Shi, Y., Zheng, K., Zhai, Y., Li, X., Long, Y., Lu, J., & Guo, C.
(2025). Hybrid Capture-Based Sequencing Enables Highly Sensitive Zoonotic Virus Detection Within the One Health Framework. Pathogens, 14(3), 264.
https://doi.org/10.3390/pathogens14030264