돼지에서 아프리카돼지열병의 병리기전,임상양상 및 감염축 조기 탐색 가능한 방법 연구 = Pathogenesis and clinical aspect in pigs infected with African swine fever, and alternative methods for early detection of viral infection

오상익 2022년
논문상세정보
' 돼지에서 아프리카돼지열병의 병리기전,임상양상 및 감염축 조기 탐색 가능한 방법 연구 = Pathogenesis and clinical aspect in pigs infected with African swine fever, and alternative methods for early detection of viral infection' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • African swine fever
  • early detection
  • pathogenicity
  • pathological lesions
  • pig
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
291 0

0.0%

' 돼지에서 아프리카돼지열병의 병리기전,임상양상 및 감염축 조기 탐색 가능한 방법 연구 = Pathogenesis and clinical aspect in pigs infected with African swine fever, and alternative methods for early detection of viral infection' 의 참고문헌

  • Zhou X, Li N, Luo Y, Liu Y, Miao F, Chen T, Zhang S, Cao P, Li X, Tian K, Qiu HJ, Hu R. Emergence of African swine fever in China, 2018. Transbound Emerg Dis. 2018, 65:1482-1484
    [2018]
  • Zhao D, Liu R, Zhang X, Li F, Wang J, Zhang J, Liu X, Wang L, Zhang J, Wu X, Guan Y, Chen W, Wang X, He X, Bu Z. Replication and virulence in pigs of the first African swine fever virus isolated in China. Emerg Microbes Infect. 2019. 8:438-447
    [2019]
  • Wu K, Liu J, Wang L, Fan S, Li Z, Li Y, Yi L, Ding H, Zhao M, Chen J/ Current state of global African swine fever vaccine development under the prevalence and transmission of ASF in China. Vaccines. 2020. 8:531
  • Woonwong Y, Kedkovid R, Arunorat J, Sirisereewan C, Nedumpun T, Poonsuk K, Panyasing Y, Poolperm P, Boonsoongnern A, Thanawongnuwech R. Oral fluid samples used for PRRSV acclimatization program and sow performance monitoring in endemic PRRS-positive farms. Trop Anim Health Prod. 2018. 50:291-298
    [2018]
  • Weesendorp E, Backer J, Stegeman A, Loeffen W. Effect of strain and inoculation dose of classical swine fever virus on within-pen transmission. Vet Res. 2009. 40:59.
    [2009]
  • Use of thermal imaging for the early detection of signs of disease in pigs challenged orally with Salmonella Typhimurium and Escherichia coli
  • Transmission studies with African swine fever virus : the early distribution of virus in pigs infected by airborne virus
    Wilkinson PJ , Donaldson AI 87:497-501 [1977]
  • Transmission of African swine fever virus from infected pigs by direct contact and aerosol routes
  • The economic and poverty impacts of animal diseases in developing countries : new roles , new demands for economics and epidemiology
    Rich KM , Perry BD 101:133-147 [2011]
  • Tabuaciri P, Bunter KL, Graser HU. Thermal imaging as a potential tool for identifying piglets at risk. AGBU Pig Genetics Workshop Armidale, Australia: Animal Genetics and Breeding Unit, University of New England. 2012. 23-30
    [2012]
  • Sánchez‐Vizcaíno JM, Laddomada A, Arias ML. African swine fever virus. In Diseases of Swine, 11th ed.; Zimmerman JJ, Karriker LA, Ramirez A, Schwartz KJ, Stevenson GW, Zhang J. Eds.; John Wiley & Sons, Inc.: New Jersey, USA, 2019; pp. 443–452
    [2019]
  • Survival of African swine fever virus in excretions from pigs experimentally infected with the Georgia 2007/1 isolate
  • Simões VG, Lyazrhi F, Picard-Hagen N, Gayrard V, Martineau GP, Waret-Szkuta A. Variations in the vulvar temperature of sows during proestrus and estrus as determined by infrared thermography and its relation to ovulation. Theriogenology. 2014. 82:1080-1085
    [2014]
  • Siewert C, Dänicke S, Kersten S, Brosig B, Rohweder D, Beyerbach M, Seifert H. Difference method for analysing infrared images in pigs with elevated body temperatures. Z Med Phys. 2014. 24:6-15
    [2014]
  • Remotely sensed imagery for early detection of respiratory disease in pigs : A pilot study
  • Quembo CJ, Jori F, Vosloo W, Heath L. Genetic characterization of African swine fever virus isolates from soft ticks at the wildlife/domestic interface in Mozambique and identification of a novel genotype. Transbound Emerg Dis. 2018. 65:420-431
    [2018]
  • Quantification of airborne African swine fever virus after experimental infection
  • Pathology and virus distribution in the lung and lymphoid tissues of pigs experimentally inoculated with three distinct type 1 PRRS virus isolates of varying pathogenicity
  • Olesen AS, Belsham GJ, Bruun Rasmussen T, Lohse L, Bødker R, Halasa T, et al. Potential routes for indirect transmission of African swine fever virus into domestic pig herds. Transbound Emerg Dis. 2020. 67:1472-1484
  • Oh SI, Lee HS, Bui VN, Dao DT, Bui NA, Le TD, Kieu MA, Nguyen QH, Tran LH, So KM, Yi SW, Kim E, Hur TY. Dynamic variations in infrared skin temperature of weaned pigs experimentally inoculated with the African swine fever virus: a pilot study. Veterinary Sciences. 2021. 8:223
  • OIE. Technical disease card of African swine fever; 2019. https://www.oie.int/fileadmin/Home/eng/Animal_Health_in_the_World/docs/pdf/Disease_cards/AFRICAN_SWINE_FEVER.pdf. Accessed June 2019.
  • Nga BTT, Dao BTA, Thi LN, Osaki M, Kawashima K, Song D, Salguero FJ, Le VP. Clinical and pathological study of the first outbreak cases of African swine fever in Vietnam, 2019. Front Vet Sci. 2020. 7:392
  • Muñoz‐Pérez C, Jurado C, Sánchez‐Vizcaíno JM. African swine fever vaccine: Turning a dream into reality. Transbound Emerg Dis. 2021. 68:2657-2668
  • Mur L, Gallardo C, Soler A, Zimmermman J, Pelayo V, Nieto R, Sanchez-Vizcaino JM, Arias M. Potential use of oral fluid samples for serological diagnosis of African swine fever. Vet Microbiol. 2013. 165:135-139
    [2013]
  • Mostaço GM, Miranda KOS, Condotta ICS, Salgado DDA. Determination of piglets’ rectal temperature and respiratory rate through skin surface temperature under climatic chamber conditions. Eng Agríc. 2015. 35:979-989
    [2015]
  • Menzel A, Beyerbach M, Siewert C, Gundlach M, Hoeltig D, Graage R, Seifert H, Waldmann KH, Verspohl J, Hennig-Pauka I. Actinobacillus pleuropneumoniae challenge in swine: Diagnostic of lung alterations by infrared thermography. BMC Vet Res. 2014. 10:1-13
    [2014]
  • Martinez-Jimenez MA, Loza-Gonzalez VM, Kolosovas-Machuca ES, Yanes-Lane ME, Ramirez-GarciaLuna AS, Ramirez-GarciaLuna JL. Diagnostic accuracy of infrared thermal imaging for detecting covid-19 infection in minimally symptomatic patients. Eur. J. Clin. Invest. 2021. 51:e13474.
  • Mai NTA, Vu XD, Nguyen TTH, Nguyen VT, Trinh TBN, Kim YJ, Kim HJ, Cho KH, Nguyen TL, Bui TTN, Jeong DG, Yoon SW, Truong T, Ambagala A, Song D, Le VP. Molecular profile of African swine fever virus (ASFV) circulating in Vietnam during 2019-2020 outbreaks. Archiev Virolo. 2021. 166:885-890
  • Lee HS, Thakur KK, Bui VN, Pham TL, Bui AN, Dao TD, Thanh VT, Wieland B. A stochastic simulation model of African swine fever transmission in domestic pig farms in the Red River Delta region in Vietnam. Transbound Emerg Dis. 2020. 68:1384-1391
  • Lee HS, Bui VN, Dao DT, Bui NA, Le TD, Kieu MA, Nguyen QH, Tran LH, Roh JH, So KM, Hur TY, Oh SI. Pathogenicity of an African swine fever virus strain isolated in Vietnam and alternative diagnostic specimens for early detection of viral infection. Porcine Health Manage. 2021. 7:36
  • Le VP, Jeong DG, Yoon SW, Kwon HM, Trinh TBN, Nguyen TL, Bui TTN, Oh J, Kim JB, Cheong KM, Tuyen NV, Bae E, Vu TTH, Yeom MY, Na W, Song D. Outbreak of African swine fever, Vietnam, 2019. Emerg Infect Dis. 2019. 25:1433
    [2019]
  • Kim HJ, Cho KH, Lee SK, Kim DY, Nah JJ, Kim HJ, Kim HJ, Hwang JY, Sohn HJ, Choi JG, Kang HE, Kim YJ. Outbreak of African swine fever in South Korea, 2019. Transbound Emerg Dis. 2020. 67:473-475
  • Kammersgaard T, Malmkvist J, Pedersen L. Infrared thermography–a non-invasive tool to evaluate thermal status of neonatal pigs based on surface temperature. Animal. 2013. 7:2026-2034
    [2013]
  • Jia G, Li W, Meng J, Tan H, Feng Y. Non-contact evaluation of a pig′ s body temperature incorporating environmental factors. Sensors. 2020. 20: 4282
    [2020]
  • Infrared skin temperature measurements for monitoring health in pigs : a review
  • Ge S, Li J, Fan X, Liu F, Li L, Wang Q, Ren W, Bao J, Liu C, Wang H, Liu Y, Zhang Y, Xu T, Wu X, Wang Z. Molecular characterization of African swine fever virus, China, 2018. Emerg Infect Dis. 2018. 24:2131-2133
  • Gallardo C, Nurmoja I, Soler A, Delicado V, Simon A, Martin E, Perez C, Nieto R, Arias M. Evolution in Europe of African swine fever genotype II viruses from highly to moderately virulent. Vet Microbiol. 2018.219:70-79
  • Gallardo C, Fernández-Pinero J, Arias M. African swine fever (ASF) diagnosis, an essential tool in the epidemiological investigation. Virus Res. 2019. 271:197676
    [2019]
  • Early detection and prediction of infection using infrared thermography .
  • Dynamics of African swine fever virus shedding and excretion in domestic pigs infected by intramuscular inoculation and contact transmission
  • Dixon LK, Chapman DA, Netherton CL, Upton C. African swine fever virus replication and genomics. Virus Res. 2013. 173:3-14 Galindo I, Alonso C. African swine fever virus: a review. Viruses. 2017. 9:103
    [2017]
  • Dixon LK, Alonso C, Escribano J, Martins C, Revilla Y, Salas ML. Family Asfarviridae. In: King AMQ, Adams MJ, Carstens EB, Lefkowitz EJ, editors. Classification and nomenclature of viruses. Nine Report of the International Committee on Taxonomy of viruses. Amsterdam: Elsevier Academic Press; 2012. p. 153-162
  • Detection of African swine fever , classical swine fever , and foot-and-mouth disease viruses in swine oral fluids by multiplex reverse transcription real-time polymerase chain reaction
  • Course and transmission characteristics of oral low-dose infection of domestic pigs and European wild boar with a Caucasian African swine fever virus isolate
  • Chen H, Zhang J, Wang, L, Wen Z, Wang X, Guan Y, Liu J, Bu Z. A seven-gene-deleted African swine fever virus is safe and effective as a live attenuated vaccine in pigs. Sci China Life Sci. 2020. 63:623-634
  • Borca MV, Ramirez-Medina E, Silva E, Vuono E, Rai A, Pruitt S, Holinka LG, Velazquez-Salinas L, Zhu J, Gladue DP. Development of a highly effective African swine fever virus vaccine by deletion of the I177L gene results in sterile immunity against the current epidemic Eurasia strain. J Virol. 2020. 94:e02017-e02019
    [2020]
  • Borca MV, Rai A, Ramirez-Medina E, Silva E, Velazquez-Salinas L, Vuono E, Pruitt S, Espinoza N, Gladue DP. A cell culture-adapted vaccine virus against the current African swine fever virus pandemic strain. J Virol. 2021. 95:e0012321
  • Bioaerosol sampling to detect avian influenza virus in Hanoi ’ s largest live poultry market .
  • African swine fever virus : a review
  • African swine fever ( ASF ) diagnosis , an essential tool in the epidemiological investigation
  • 9. Nix, RJ, Gallardo C, Hutchings G, Blanco E, Dixon LK. Molecular epidemiology of African swine fever virus studied by analysis of four variable genome regions. Archives of Virology. 2007. 151:2475-2494
    [2007]
  • 9. FAO EMPRES. ASF situation in Asia update; 2020. https://www.fao.org/ag/aginfo/programmes/en/empres/ASF/situation_update.html. Accessed 05 Mar 2020
  • 8. Van Phan Le DGJ, Yoon SW, Kwon HM, Trinh TBN, Nguyen TL, Bui TT, Oh J, Kim JB, Cheong KM, Tuyen NV, Bae E, Vu TTH, Yeom M, Na W, Song D. Outbreak of African swine fever, Vietnam. Emerg Infect Dis. 2019. 25:1433
    [2019]
  • 8. Achenbach JE, Gallardo C, Nieto‐Pelegrín E, Rivera‐Arroyo B, Degefa‐Negi T, Arias M, Jenberie D, Mulisa D, Gizaw E, Gelaye TR, Chibssa A, Belaye A, Loitsch M, Forsa M, Yami A, Diallo A, Soler CE, Lamien J, Sánchez‐Vizcaíno JM. Identification of a new genotype of African swine fever virus in domestic pigs from Ethiopia. Transbound Emerg Dis. 2017. 64:1393-1404
  • 7. Mai NTA, Vu XD, Nguyen TTH, Nguyen VT, Trinh TBN, Kim YJ, Kim HJ, Cho KH, Nguyen TL, Bui TTN, Jeong DG, Yoon SW, Truong T, Ambagala A, Song D, Le VP. Molecular profile of African swine fever virus (ASFV) circulating in Vietnam during 2019-2020 outbreaks. Archiev Virolo. 2021. 166:885-890
  • 7. Afonso CL, Piccone ME, Zaffuto KM, Neilan J, Kutish GF, Lu Z, Balinsky CA, Gibb TR, Bean TJ, Zsak L, Rock DL. African swine fever virus multigene family 360 and 530 genes affect host interferon response. J Virology. 2004. 78: 1858-1864
    [2004]
  • 6. Zhao D, Liu R, Zhang X, Li F, Wang J, Zhang J, Liu X, Wang L, Zhang J, Wu X, Guan Y, Chen W, Wang X, He X, Bu Z. Replication and virulence in pigs of the first African swine fever virus isolated in China. Emerg Microbes Infect. 2019. 8:438-447
    [2019]
  • 6. Esteves A, Marques MI, Costa JV. Two-dimensional analysis of African swine fever virus proteins and proteins induced in infected cells. Virology. 1986. 152:192-206
    [1986]
  • 5. Sánchez-Vizcaíno JM, Mur L, Gomez-Villamandos JC, Carrasco L. An update on the epidemiology and pathology of African swine fever. J Comp Pathol. 2015. 152:9-21
    [2015]
  • 5. Quembo CJ, Jori F, Vosloo W, Heath L. Genetic characterization of African swine fever virus isolates from soft ticks at the wildlife/domestic interface in Mozambique and identification of a novel genotype. Transbound Emerg Dis. 2018. 65:420-431
    [2018]
  • 4. Burrage TG, Lu Z, Neilan JG, Rock DL, Zsak L. African swine fever virus multigene family 360 genes affect virus replication and generalization of infection in Ornithodoros porcinus ticks. J Virol. 2004. 78:2445-2453
    [2004]
  • 4. Achenbach JE, Gallardo C, Nieto‐Pelegrín E, Rivera‐Arroyo B, Degefa‐Negi T, Arias M, Jenberie D, Mulisa D, Gizaw E, Gelaye TR, Chibssa A, Belaye A, Loitsch M, Forsa M, Yami A, Diallo A, Soler CE, Lamien J, Sánchez‐Vizcaíno JM. Identification of a new genotype of African swine fever virus in domestic pigs from Ethiopia. Transbound Emerg Dis. 2017. 64:1393-1404
  • 38. Gallardo C, Nurmoja I, Soler A, Delicado V, Simon A, Martin E, Perez C, Nieto R, Arias M. Evolution in Europe of African swine fever genotype II viruses from highly to moderately virulent. Vet Microbiol. 2018. 219:70-79
    [2018]
  • 37. Lee HS, Thakur KK, Bui VN, Pham TL, Bui AN, Dao TD, Thanh VT, Wieland B. A stochastic simulation model of African swine fever transmission in domestic pig farms in the Red River Delta region in Vietnam. Transbound Emerg Dis. 2020. 68:1384-1391
  • 36. Borca MV, Ramirez-Medina E, Silva E, Vuono E, Rai A, Pruitt S, Holinka LG, Velazquez-Salinas L, Zhu J, Gladue DP. Development of a highly effective African swine fever virus vaccine by deletion of the I177L gene results in sterile immunity against the current epidemic Eurasia strain. J Virol. 2020. 94:e02017-e02019
    [2020]
  • 35. Lee HS, Bui VN, Dao DT, Bui NA, Le TD, Kieu MA, Nguyen QH, Tran LH, Roh JH, So KM, Hur TY, Oh SI. Pathogenicity of an African swine fever virus strain isolated in Vietnam and alternative diagnostic specimens for early detection of viral infection. Porcine Health Manage. 2021. 7:36
  • 35. Chen H, Zhang J, Wang, L, Wen Z, Wang X, Guan Y, Liu J, Bu Z. A seven-gene-deleted African swine fever virus is safe and effective as a live attenuated vaccine in pigs. Sci China Life Sci. 2020. 63:623-634
  • 34. Sánchez-Cordón PJ, Floyd T, Hicks D, Crooke HR, McCleary S, McCarthy RR, Strong R, Dixon LK, Neimanis A, Wikström-Lassa E, Gavier-Widén D, Núñez A. Evaluation of lesions and viral antigen distribution in domestic pigs inoculated intranasally with African swine fever virus Ken05/Tk1 (Genotype X). Pathogens. 2021. 10:768
  • 33. Gallardo C, Nurmoja I, Soler A, Delicado V, Simon A, Martin E, Perez C, Nieto R, Arias M. Evolution in Europe of African swine fever genotype II viruses from highly to moderately virulent. Vet Microbiol. 2018. 219:70-79
    [2018]
  • 33. Gallardo C, Nieto R, Soler A, Pelayo V, Fernández-Pinero J, Markowska-Daniel I, Pridotkas G, Nurmoja I, Granta R, Simon A, Perez C, Martin E, Fernández-Pacheco P, Arias, M. Assessment of African swine fever diagnostic techniques as a response to the epidemic outbreaks in Eastern European Union countries: how to improve surveillance and control programs. J Clin Microbiol. 2015. 53:2555-2565
  • 32. Lee HS, Thakur KK, Bui VN, Pham TL, Bui AN, Dao TD, Thanh VT, Wieland B. A stochastic simulation model of African swine fever transmission in domestic pig farms in the Red River Delta region in Vietnam. Transbound Emerg Dis. 2020. 68:1384-1391
  • 31. Salguero FJ, Frossard JP, Rebel JM, Stadejek T, Morgan SB, Graham SP, Steinbach F. Host-pathogen interactions during porcine reproductive and respiratory syndrome virus 1 infection of piglets. Virus Res. 2015. 202:135-143
    [2015]
  • 31. Chen H, Zhang J, Wang, L, Wen Z, Wang X, Guan Y, Liu J, Bu Z. A seven-gene-deleted African swine fever virus is safe and effective as a live attenuated vaccine in pigs. Sci China Life Sci. 2020. 63:623-634
  • 30. O’Donnell V, Holinka LG, Krug PW, Gladue DP, Carlson J, Sanford B, Affano M, Kramer E, Lu Z, Arzt J, Reese B, Carrillo C, Risatti GR, Borca MV. African swine fever virus Georgia 2007 with a deletion of virulence-associated gene 9GL (B119L), when administered at low doses, leads to virus attenuation in swine and induces an effective protection against homologous challenge. J Virol. 2015. 89:8556-8566
  • 30. Gallardo C, Soler A, Nieto R, Cano C, Pelayo V, Sánchez MA, Pridotkas J, Fernandez-Pinero VB, Arias M. Experimental infection of domestic pigs with African swine fever virus Lithuania 2014 genotype II field isolate. Transbound Emerg Dis. 2017. 64:300-304
    [2017]
  • 3. De Villiers EP, Gallardo C, Arias M, Da Silva M, Upton C, Martin R, Bishop RP. Phylogenomic analysis of 11 complete African swine fever virus genome sequences. Virology. 2010. 400:128-136
    [2010]
  • 29. Galindo-Cardiel I, Ballester M, Solanes D, Nofrarías M, López-Soria S, Argilaguet JM, Lacasta A, Accensi F, Rodríguez F, Segalés J. Standardization of pathological investigations in the framework of experimental ASFV infections. Virus Res. 2013.173:180-190
  • 29. Gabriel C, Blome S, Malogolovkin A, Parilov S, Kolbasov D, Teifke JP, Beer M. Characterization of African swine fever virus Caucasus isolate in European wild boars. Emerg Infect Dis. 2011. 17. 2342-2345
    [2011]
  • 28. Sánchez-Cordón PJ, Jabbar T, Chapman D, Dixon LK, Montoya M. Absence of long-term protection in domestic pigs immunized with attenuated African swine fever virus isolate OURT88/3 or BeninΔMGF correlates with increased levels of regulatory T cells and interleukin-10. J Virol. 2020. 94:e00350-20
    [2020]
  • 27. Sánchez-Cordón PJ, Chapman D, Jabbar T, Reis AL, Goatley L, Netherton CL, Taylor G, Montoya M, Dixon, L. Different routes and doses influence protection in pigs immunised with the naturally attenuated African swine fever virus isolate OURT88/3. Antiviral Res. 2017. 138:1-8
    [2017]
  • 26. Galindo-Cardiel I, Ballester M, Solanes D, Nofrarías M, López-Soria S, Argilaguet JM, Lacasta A, Accensi F, Rodríguez F, Segalés J. Standardization of pathological investigations in the framework of experimental ASFV infections. Virus Res. 2013. 173:180-190
    [2013]
  • 26. Boinas FS, Hutchings GH, Dixon LK, Wilkinson PJ. Characterization of pathogenic and non-pathogenic African swine fever virus isolates from Ornithodoros erraticus inhabiting pig premises in Portugal. J General Virol. 2004. 85:2177-2187
    [2004]
  • 25. Zhou X, Li N, Luo Y, Liu Y, Miao F, Chen T, Zhang S, Cao P, Li X, Tian K, Qiu HJ, Hu R. Emergence of African swine fever in China, 2018. Transbound Emerg Dis. 2018, 65:1482-1484
    [2018]
  • 24. Sánchez-Cordón PJ, Montoya M, Reis AL, Dixon LK. African swine fever: A re-emerging viral disease threatening the global pig industry. Vet J. 2018. 233:41-48 25. Kleiboeker SB. Swine fever: classical swine fever and African swine fever. Vet Clin: Food Ani Pract. 2002. 18:431-451
  • 24. Rodríguez-Bertos A, Cadenas-Fernández E, Rebollada-Merino A, Porras-González N, Mayoral-Alegre FJ, Barreno L, Kosowska A, Tomé-Sánchez I, Barasona JA, Sánchez-Vizcaíno JM. Clinical course and gross pathological findings in wild boar infected with a highly virulent strain of African swine fever virus genotype II. Pathogens. 2020, 9:688
  • 23. Walczak M, Wasiak M, Dudek K, Kycko A, Szacawa E, Olech M, Woźniakowski G, Szczotka-Bochniarz A. Blood counts, biochemical parameters, inflammatory, and immune responses in pigs infected experimentally with the African swine fever virus isolate Pol18_28298_O111. Viruses. 2021. 13:521
  • 23. Sánchez-Vizcaíno JM, Mur L, Gomez-Villamandos JC, Carrasco L. An update on the epidemiology and pathology of African swine fever. J Comp Pathol. 2015. 152:9-21.
    [2015]
  • 22. Walczak M, Wasiak M, Dudek K, Kycko A, Szacawa E, Olech M, Woźniakowski G, Szczotka-Bochniarz A. Blood counts, biochemical parameters, inflammatory, and immune responses in pigs infected experimentally with the African swine fever virus isolate Pol18_28298_O111. Viruses. 2021. 13:521
  • 22. Sánchez-Cordón PJ, Vidaña B, Neimanis A, Núñez A, Wikström E, Gavier-Widén D. Pathology of African swine fever. In Understanding and Combatting African Swine Fever: A European Perspective; Iacolina L, Penrith ML, Bellini S, Chenais E, Jori F, Montoya M, Ståhl K, Gavier-Widén D. Eds.; Wageningen Academic Publishers: Wageningen, The Netherlands, 2021; pp. 87-139
  • 21. Sehl J, Pikalo J, Schäfer A, Franzke K, Pannhorst K, Elnagar A, Blohm U, Blome S, Breithaupt A. Comparative pathology of domestic pigs and wild boar infected with the moderately virulent African swine fever virus strain Estonia 2014. Pathogens. 2020. 9:662.
  • 21. Pikalo J, Zani L, Hühr J, Beer M, Blome S. Pathogenesis of African swine fever in domestic pigs and European wild boar - Lessons learned from recent animal trials. Virus Res. 2019, 271:197614.
    [2019]
  • 20. Gómez-Villamandos JC, Bautista MJ, Sánchez-Cordón PJ, Carrasco L. Pathology of African swine fever: the role of monocyte-macrophage. Virus Res. 2013. 173:140-149
    [2013]
  • 20 Sánchez-Vizcaíno JM, Mur L, Gomez-Villamandos JC, Carrasco L. An update on the epidemiology and pathology of African swine fever. J Comp Pathol. 2015. 152:9-21.
    [2015]
  • 2. Salas ML and Andres G. African swine fever virus morphogenesis. Virus Res. 2013. 173:29-41
    [2013]
  • 2. Dixon LK, Alonso C, Escribano J, Martins C, Revilla Y, Salas ML. Family Asfarviridae. In: King AMQ, Adams MJ, Carstens EB, Lefkowitz EJ, editors. Classification and nomenclature of viruses. Nine Report of the International Committee on Taxonomy of viruses. Amsterdam: Elsevier Academic Press; 2012. p. 153-162
  • 19. Sánchez-Cordón PJ, Vidaña B, Neimanis A, Núñez A, Wikström E, Gavier-Widén D. Pathology of African swine fever. In Understanding and Combatting African Swine Fever: A European Perspective; Iacolina L, Penrith ML, Bellini S, Chenais E, Jori F, Montoya M, Ståhl K, Gavier-Widén D. Eds.; Wageningen Academic Publishers: Wageningen, The Netherlands, 2021; pp. 87-139
  • 19. Sun E, Zhang Z, Wang Z, He X, Zhang X, Wang L, Wang W, Huang L, Xi F, Huangfu H, Tsegay G, Huo H, Sun J, Tian Z, Xia W, Yu X, Li F, Liu R, Guan Y, Zhao D, Bu Z. Emergence and prevalence of naturally occurring lower virulent African swine fever viruses in domestic pigs in China in 2020. Sci China Life Sci. 2021. 64:752-765
  • 18. Sánchez‐Vizcaíno JM, Laddomada A, Arias ML. African swine fever virus. In Diseases of Swine, 11th ed.; Zimmerman JJ, Karriker LA, Ramirez A, Schwartz KJ, Stevenson GW, Zhang J. Eds.; John Wiley & Sons, Inc.: New Jersey, USA, 2019; pp. 443-452
    [2019]
  • 18. Gómez-Villamandos JC, Bautista MJ, Hervás J, Carrasco L, de Lara, Pérez P, Wilkinson J, Sierra MA. Subcellular changes in platelets in acute and subacute African swine fever. J Comp Pathol. 1996. 115:327-341
  • 17. Wang S, Zhang J, Zhang Y, Yang J, Wang L, Qi Y, Han X, Zhou X, Miao F, Chen T, Wang Y, Zhang F, Zhang S, Hu R. Cytokine storm in domestic pigs induced by infection of virulent African swine fever virus. Front Vet Sci. 2020. 7:601641
  • 17. Choe S, Le VP, Shin J, Kim JH, Kim KS, Song S, Cha RM, Park GN, Nguyen TL, Hyun BH, Park BK, An DJ. Pathogenicity and genetic characterization of Vietnamese classical swine fever virus: 2014–2018. Pathogens. 2020. 9:169.
  • 16. OIE. Technical disease card of African Swine Fever. 2019. https://www.oie.int/fileadmin/Home/eng/Animal_Health_in_the _World/docs/pdf/Disease_cards/AFRICAN_SWINE_FEVER.pdf. Accessed June 2019
    [2019]
  • 16. Huong Giang NT, Lan NT, Nam NH, Hirai T, Yamaguchi R. Pathological characterization of an outbreak of porcine reproductive and respiratory syndrome in Northern Vietnam. J Comp Pathol. 2016. 154:135-149.
  • 15. De Tray DE. African swine fever: a review. Bull Epiz Dis Afr. 1957, 5:475-478
    [1957]
  • 14. Salguero FJ, Frossard JP, Rebel JM, Stadejek T, Morgan SB, Graham SP, Steinbach F. Host-pathogen interactions during porcine reproductive and respiratory syndrome virus 1 infection of piglets. Virus Res. 2015. 202:135-43.
    [2015]
  • 14. Gabriel C, Blome S, Malogolovkin A, Parilov S, Kolbasov D, Teifke JP, Beer M. Characterization of African swine fever virus Caucasus isolate in European wild boars. Emerg Infect Dis. 2011. 17:2342-2345
    [2011]
  • 13. Kim HJ, Cho KH, Lee SK, Kim DY, Nah JJ, Kim HJ, Kim HJ, Hwang JY, Sohn HJ, Choi JG, Kang HE, Kim YJ. Outbreak of African swine fever in South Korea, 2019. Transbound Emerg Dis. 2020. 67: 473-475
    [2020]
  • 13. Gallardo C, Soler A, Nieto R, Cano C, Pelayo V, Sánchez MA, Pridotkas J, Fernandez-Pinero VB, Arias M. Experimental infection of domestic pigs with African swine fever virus Lithuania 2014 genotype II field isolate. Transbound Emerg Dis. 2017. 64:300-304
    [2017]
  • 12. Nga BTT, Dao BTA, Thi LN, Osaki M, Kawashima K, Song D, Salguero FJ, Le VP. Clinical and pathological study of the first outbreak cases of African swine fever in Vietnam, 2019. Front Vet Sci. 2020. 7:392
  • 12. Mai NTA, Vu XD, Nguyen TTH, Nguyen VT, Trinh TBN, Kim YJ, Kim HJ, Cho KH, Nguyen TL, Bui TTN, Jeong DG, Yoon SW, Truong T, Ambagala A, Song D, Le VP. Molecular profile of African swine fever virus (ASFV) circulating in Vietnam during 2019-2020 outbreaks. Archiev Virolo. 2021. 166:885-890
  • 11. Izzati UZ, Inanaga M, Hoa NT, Nueangphuet P, Myint O, Truong QL, Lan NT, Norimine J, Hirai T, Yamaguchi R. Pathological investigation and viral antigen distribution of emerging African swine fever in Vietnam. Transbound Emerg Dis. 2020. 68:2039-2050
  • 11. Cortiñas Abrahantes J, Gogin A, Richardson J, Gervelmeyer A. European Food Safety Authority (EFSA). Epidemiological analyses on African swine fever in the Baltic countries and Poland. 2017. EFSA J, 15:e04732
    [2017]
  • 10. Tran HTT, Dang AK, Ly DV, Vu HT, Hoang TV, Nguyen CT, Chu NT, Nguyen VT, Nguyen AT, Truong AD, Phan NT, Dang HV. An improvement of real-time PCR system based on probe modification is required for accurate detection of African swine fever virus in clinical samples in Vietnam. Asian-Australas J Anim Sci. 2020. 33:1683-90
  • 10. Gallardo C, Fernández-Pinero J, Pelayo V, Gazaev I, Markowska-Daniel I, Pridotkas G, Nieto R, Fernández-Pacheco P, Bokhan S, Nevolko O, Drozhzhe Z, Perez C, Soler A, Kolvasov D, Arias M. Genetic variation among African swine fever genotype II viruses, eastern and central Europe. Emerg Infect Dis. 2014. 20:1544
  • 1. OIE. Technical disease card of African swine fever; 2019. https://www.oie.int/fileadmin/Home/eng/Animal_Health_in_the_World/docs/pdf/Disease_cards/AFRICAN_SWINE_FEVER.pdf. Accessed June 2019