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Ngày nhận bài: 26/06/25                Ngày hoàn thiện: 15/12/25                Ngày đăng: 15/12/25Tóm tắt
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[1] Z. Li, W. Chen, Z. Qiu, Y. Li, J. Fan, K. Wu, X. Li, M. Zhao, H. Ding, S. Fan, and J. Chen, “African Swine Fever Virus: A Review,” Life (Basel), vol. 12, no. 8, 2022, Art. no. 1255.
[2] C. Gallardo, J. Fernández-Pinero, and M. Arias, “African swine fever (ASF) diagnosis, an essential tool in the epidemiological investigation,” Virus Res., vol. 271, 2019, Art. no. 197676.
[3] L. K. Dixon, H. Sun, and H. Roberts, “African swine fever,” Antiviral Res., vol. 165, pp. 34-41, 2019.
[4] Q. Shao, R. Li, Y. Han, D. Han, and J. Qiu, “Temporal and Spatial Evolution of the African Swine Fever Epidemic in Vietnam,” Int. J. Environ. Res. Public Health., vol. 19, no. 13, 2022, Art. no. 8001.
[5] M. P. Frant, A. Gal-Cisoń, Ł. Bocian, A. Ziętek-Barszcz, K. Niemczuk, and A. Szczotka-Bochniarz, “African Swine Fever (ASF) Trend Analysis in Wild Boar in Poland (2014-2020),” Animals (Basel), vol. 12, no. 9, 2022, Art. no. 1170.
[6] M. Bezymennyi, O. Tarasov, G. V. Kyivska, N. A. Mezhenska, S. Mandyhra, G. Kovalenko, M. Sushko, N. Hudz, S. V. Skorokhod, R. Datsenko, L. Muzykina, E. Milton, M. A. Sapachova, S. Nychyk, I. Halka, M. Frant, F. Huettmann, D. M. Drown, A. Gerilovych, A. A. Mezhenskyi, E. Bortz, and C. E.Lange, “Epidemiological Characterization of African Swine Fever Dynamics in Ukraine, 2012-2023,” Vaccines (Basel)., vol. 11, no. 7, 2023, Art. no. 1145.
[7] S. Blome, C. Gabriel, and M. Beer, “Pathogenesis of African swine fever in domestic pigs and European wild boar,” Virus Res., vol. 173, no. 1, pp. 122-130, 2013.
[8] D. H. Nguyen, L. T. Nguyen, N. Isoda, Y. Sakoda, L. T. Hoang, and M. A. Stevenson, “Descriptive epidemiology and spatial analysis of African swine fever epidemics in Can Tho, Vietnam, 2019,” Prev. Vet. Med., vol. 211, 2023, Art. no. 105819.
[9] C. H. Hsu, M. Montenegro, and A. Perez, “Space-Time Dynamics of African Swine Fever Spread in the Philippines,” Microorganisms, vol. 11, no. 6, 2023, Art. no. 1492.
[10] A. Alejo, T. Matamoros, M. Guerra, and G. Andrés, “A Proteomic Atlas of the African Swine Fever Virus Particle,” J. Virol., vol. 92, no. 23, 2018, Art. no. e01293-18.
[11] E. J. Awosanya, B. Olugasa, G. Ogundipe, and Y. T. Grohn, “Sero-prevalence and risk factors associated with African swine fever on pig farms in southwest Nigeria,” BMC Vet. Res., vol. 11, 2015, Art. no. 133.
[12] T. H. P. Phan, T. N. Nguyen, V. C. La, T. T. Pham, N. T. Tran, T. T. Dang, and T. T. L. Phan, “Some pathological characteristics of pigs infected with african swine fever disease in Quang Ninh province,” TNU Journal of Science and Technology, vol. 226, no. 5, pp. 193-201, 2021.
[13] F. J. Salguero, “Comparative Pathology and Pathogenesis of African Swine Fever Infection in Swine,” Front. Vet. Sci., vol. 7, 2020, Art. no. 282.DOI: https://doi.org/10.34238/tnu-jst.13134
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