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References 1. Zoonoses and veterinary public health (VPH). World Health Organization Web site. http://www.who.int/zoonoses/en/. Accessed July 25, 2012. 2. Zoonotic diseases. European Food Safety Authority. Web site http://www.efsa.europa.eu/en/topics/topic/zoonoticdiseases.htm. Accesssed July 25, 2012. 3. Woolhouse ME, Gowtage SS. Host range and emerging and reemerging pathogens. Emerg Infect Dis. 2005;11(12):1842-47. 4. Smith TC, Harper AL, Nair R, et al. Emerging Swine Zoonoses. Vector borne Zoonotic Dis. 2011;11(9):1225-34. 5. United States Department of

References 1. Anon. U.S. Department of Health and Human Services, Food and Drug Administration (FDA), Center for Drug Evaluation and Research (CDER), Center for Veterinary Medicine: Guidance for Industry, Bioanalytical Method Validation, 2001. 2. Anon. European Medicines Agency (EMEA): Guideline on bioanalytical method validation, 2011. 3. Benchaoui H.A., Nowakowski M., Sherington J., Rowan T.G., Sunderland S.J.: Pharmacokinetics and lung tissue concentrations of tulathromycin in swine. J Vet Pharmacol Therap 2004, 27 , 203-210. 4. Bohm D.A., Stachel C.S., Gowik

[1] Cao, Y. J., Chen, L. C., Tan, B. Y., Guan, M., Wei, M. P. (2002): A survey on Trichinella infection of swine slaughtered in abattoirs in Nanning city. Gongxi J. Anim. Vet. Sci., 18: 13–14 [2] Chen, H. X. (2004): Investigation on Trichinella infection of pork sold at markets in Guomaying township of Guinan county of Qinghai province. Chin. Qinghai J. Anim. Vet. Sci., 33: 18 [3] Chen, L. (2003): A survey on Trichinella spiralis infection of pork sold at markets in Bayan township of Hualong county of Qinghai province. Chin. Qinghai J. Anim. Vet. Sci., 33: 18

REFERENCES 1. Gallardo C, Reoyo АТ, Fernández-Pinero J, Iglesias I, Munoz J, Arias L: African swine fever: a global view of the current challenge. Porcine Health Management 2015, 1:21. 2. Gallardo C, Okoth E, Pelayo V, Anchuelo R, Martín E, Simón A, Llorente A, Nieto R, Soler A, Martín R, Arias M, Bishop RP: African swine fever viruses with two different genotypes, both of which occur in domestic pigs, are associated with ticks and adult warthogs, respectively, at a single geographical site. J Gen Virol 2011, 92: 432-444. 3. Sánchez-Vizcaínoa JM, Martínez

References 1. Afonso C.L., Piccone M.E., Zaffuto K.M., Neilan J., Kutish G.F., Lu Z., Balinsky C.A., Gigg T.R., Bean T.J., Zsak L., Rock D.L.: African swine fever virus multigene family 360 and 530 genes affect host interferon response. J Virol 2004, 78, 1858-1864. 2. Alcami A., Lira S.A.: Modulation of chemokine activity by viruses. Curr Opin Immunol 2010, 22, 482-487. 3. Alonso C., Galindo I., Cuesta-Geijo M.A., Cabezas M., Hernaez B., Muñoz-Moreno R.: African swine fever virus-cell interactions: from virus entry to cell survival. Virus Res 2013, 173, 42-57. 4

References 1. Bi Y., Fu G., Chen J., Peng J., Sun Y., Wang J., Pu J., Zhang Y., Gao H., Ma G., Tian F., Brown I.H., Liu J.: Novel swine influenza virus reassortants in pigs, China. Emerg Infect Dis 2010, 16 , 1162-1164. 2. Brown I.H., Harris P.A., McCauley J.W., Alexander D.J.: Multiple genetic reassortment of avian and human influenza A viruses in European pigs, resulting in the emergence of an H1N2 virus of novel genotype. J Gen Virol 1998, 79 , 2947-2955. 3. Brown I.H.: The epidemiology and evolution of influenza viruses in pigs. Vet Microbiol 2000, 74 , 29

References 1. Achenbach J.E., Gallardo C., Nieto-Pelegrín E., Rivera-Arroyo B., Degefa-Negi T., Arias M., Jenberie S., Mulisa D.D., Gizaw D., Gelaye E., Chibssa T.R., Belaye A., Loitsch A., Forsa M., Yami M., Diallo A., Soler A., Lamien C.E., Sánchez-Vizcaíno J.M.: Identification of a new genotype of African swine fever virus in domestic pigs from Ethiopia. Transbound Emerg Dis 2016, doi: 10.1111/tbed.12511. 2. Arzt J., White W.R., Thomsen B.V., Brown C.C.: Agricultural diseases on the move early in the third millennium. Vet Pathol 2010, 47, 15–27. 3. Bellini S

References 1. Bi Y., Fu G., Chen J., Peng J., Sun Y., Wang J., Pu J., Zhang Y., Gao H., Ma G., Tian F., Brown I.H., Liu J.: Novel swine influenza virus reassortants in pigs, China. Emerg Infect Dis 2010, 16 , 1162-1164. 2. Brown I.H., Harris P.A., Alexander D.J.: Serological studies of influenza viruses in pigs in Great Britain 1991-2. Epidemiol Infect 1995, 114 , 511-520. 3. Brown I.H., Ludwig S., Olsen C.W., Hannoun C., Scholtissek C., Hinshaw V.S., Harris P.A., McCauley J.W., Strong I., Alexander D.J.: Antigenic and genetic analyses of H1N1 influenza A

chlamydiae in boars and semen used for artificial insemination. Theriogenology, 65: 1750-1758. Lehmann C., Elze K. (1997). Keimspektrum infektiös bedingter Aborte bei Pferd, Rind, Schwein und Schaf von 1983-1993 in Nordwest- und Mittelthüringen. Tierärztl. Umschau, 52: 495-505. Lenart J., Andersen A.A., Rockey D.D. (2001). Growth and development of tetracycline-resistant Chlamydia suis. Antimicrob. Agents Chemother., 45: 2198-2203. Longbottom D. (2004). Chlamydial infections of domestic ruminants and swine: new nomenclature and new knowledge. Vet. J., 168: 9-11. Niemczuk K

References 1. Bi Y., Fu G., Chen J., Peng J., Sun Y., Wang J., Pu J., Zhang Y., Gao H., Ma G., Tian F., Brown I.H., Liu J.: Novel swine influenza virus reassortants in pigs, China. Emerg Infect Dis 2010, 16 , 1162-1164. 2. Brown I.H., Chakraverty P., Harris P.A., Alexander D.J.: Disease outbreaks in pigs in Great Britain due to an influenza A virus of H1N2 subtype. Vet Rec 1995, 136 , 328-329. 3. Brown I.H., Harris P.A., McCauley J.W., Alexander D.J.: Multiple genetic reassortment of avian and human influenza A viruses in European pigs, resulting in the