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Vaccine|June 9, 2006
Evaluation of fowlpox-vaccinia virus prime-boost vaccine strategies for high-level mucosal and systemic immunity against HIV-1Charani Ranasinghe, Jill C Medveczky, Donna Woltring, et al.The Journal of General Virology|February 4, 2011
Preclinical efficacy studies of influenza A haemagglutinin precursor cleavage loop peptides as a potential vaccineDarren S Miller, John Finnie, Timothy R Bowden, et al.Veterinary Microbiology|July 16, 2008
Microarray-based detection of viruses causing vesicular or vesicular-like lesions in livestock animalsPhilippa J M Jack, Rachel N Amos-Ritchie, Antonio Reverter, et al.Human Vaccines|October 3, 2006
Dose-response relationship of DNA and recombinant fowlpox virus prime-boost HIV vaccines: implications for future trialsRobert De Rose, Mark T Sullivan, C Jane Dale, et al.The Journal of General Virology|December 18, 2008
Yemen and Vietnam capripoxviruses demonstrate a distinct host preference for goats compared with sheepShawn Babiuk, Timothy R Bowden, Geoff Parkyn, et al.Journal of Virological Methods|May 12, 2009
Detection of antibodies specific for sheeppox and goatpox viruses using recombinant capripoxvirus antigens in an indirect enzyme-linked immunosorbent assayTimothy R Bowden, Barbara E Coupar, Shawn L Babiuk, et al.Journal of Virology|October 20, 2006
Comparative efficacy of subtype AE simian-human immunodeficiency virus priming and boosting vaccines in pigtail macaquesRobert De Rose, C Jane Batten, Miranda Z Smith, et al.Vaccine|March 1, 2005
Subtype AE HIV-1 DNA and recombinant Fowlpoxvirus vaccines encoding five shared HIV-1 genes: safety and T cell immunogenicity in macaquesRobert De Rose, Socheata Chea, C Jane Dale, et al.Vaccine|June 30, 2005
Mucosally-administered human-simian immunodeficiency virus DNA and fowlpoxvirus-based recombinant vaccines reduce acute phase viral replication in macaques following vaginal challenge with CCR5-tropic SHIVSF162P3Stephen J Kent, C Jane Dale, Charani Ranasinghe, et al.Veterinary Research|May 1, 2020
Hayes Yard virus: a novel ephemerovirus isolated from a bull with severe clinical signs of bovine ephemeral fever is most closely related to Puchong virusKim R Blasdell, Steven S Davis, Rhonda Voysey, et al.Pageof 5