1Dong X, Zhao M, Tang S, et al. Review of Different Strategies for Preventing and Controlling Classical Swine Fever[J].Israel Journal of Veterinary Medicine,2012, 67 (4) : 203-213.
7Espy M J, Uhl J R, Sloan L M, et al. Real-time PCR in clinical microbiology:applications for routine laboratory testing [J].Clin Microbiol Rev, 2006,19(1): 165-256.
8Hoffmann B., Blome S, Bonilauri P, et al. Classical swine fever virus detection: results of a real-time reverse transcription polymerase chain reaction ring trial conducted in the framework of the European network of excellence for epizootic disease diagnosis and control[J].Vet Diagn Invest, 2011,23(5):999-1004.
9Widr n F, Everettb H, Blome S, et al. Comparison of two real-time RT-PCR assays for differentiation of C-strain vaccinated from classical swine fever infected pigs and wild boars[J].Research in Veterinary Science, 2014-6-10.
10Liu L, Xia H, Everett H, et al. A generic real-time raqMan assay for specific detection of lapinized Chinese vaccines against classical swine fever [J]. Journal of Virological Methods ,2011(175): 170-174.
5Sun S Q,Yin S H, Guo H C, et al. Genetic typing of classical swine fever virus isolates from China[J]. Transb Emerg Dis, 2013,60(4) :370-375.
6Leifer I, Everett H, Hoffmann B, et al. Escape of classical swine fever C-strain vaccine virus from detection by C-strain specific real-time RT-PCR caused by a point mutation in the prime-binding site[J]. J Virol Meth,2010,166(1-2) :98-100.
7Everett HE,Crudgington BS,Sosan-Souule O,et al. Differenti- al detection of classical swine fever virus challenge strains in C- strain vaccinated pigs[J]. BMC Vet Res, 2014,10 ( 1 ) : 281.
8Sun Y K,Yang Y A,Zheng H L. Co-expression of Erns and E2 genes of classical swine fever virus by replication-defective re- combinant adenovirus completely protects pigs against virulent challenge with classical swine fever virus[J]. Res Vet Sci, 2013,94:354-360.