Literatura académica sobre el tema "Stallion reproductive tract"

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Artículos de revistas sobre el tema "Stallion reproductive tract"

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Edwards, John F. "Pathologic conditions of the stallion reproductive tract." Animal Reproduction Science 107, no. 3-4 (2008): 197–207. http://dx.doi.org/10.1016/j.anireprosci.2008.05.002.

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Hedges, Jodi F., Udeni B. R. Balasuriya, Peter J. Timoney, William H. McCollum, and N. James MacLachlan. "Genetic Divergence with Emergence of Novel Phenotypic Variants of Equine Arteritis Virus during Persistent Infection of Stallions." Journal of Virology 73, no. 5 (1999): 3672–81. http://dx.doi.org/10.1128/jvi.73.5.3672-3681.1999.

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ABSTRACT The persistently infected carrier stallion is the critical natural reservoir of equine arteritis virus (EAV), as venereal infection of mares frequently occurs after breeding to such stallions. Two Thoroughbred stallions that were infected during the 1984 outbreak of equine viral arteritis in central Kentucky subsequently became long-term EAV carriers. EAV genomes amplified from the semen of these two stallions were compared by sequence analysis of the six 3′ open reading frames (ORFs 2 through 7), which encode the four known structural proteins and two uncharacterized glycoproteins. T
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Balasuriya, Udeni B. R., Jodi F. Hedges, Victoria L. Smalley, et al. "Genetic characterization of equine arteritis virus during persistent infection of stallions." Journal of General Virology 85, no. 2 (2004): 379–90. http://dx.doi.org/10.1099/vir.0.19545-0.

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Equine arteritis virus (EAV) causes a persistent infection of the reproductive tract of carrier stallions. The authors determined the complete genome sequences of viruses (CW96 and CW01) that were present 5 years apart in the semen of a carrier stallion (CW). The CW96 and CW01 viruses respectively had only 85·6 % and 85·7 % nucleotide identity to the published sequence of EAV (EAV030). The CW96 and CW01 viruses had two 1 nt insertions and a single 1 nt deletion in the leader sequence, and a 3 nt coding insertion in ORF1a; thus their genomes included 12 708 nt as compared to the 12 704 nt in EA
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Kankavi, Orhan, Ayhan Ata, and M. Akif Ciftcioglu. "Surfactant protein A and D in the reproductive tract of stallion." Theriogenology 66, no. 5 (2006): 1057–64. http://dx.doi.org/10.1016/j.theriogenology.2006.02.047.

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BILINSKA, B., A. HEJMEJ, M. GANCARCZYK, and J. SADOWSKA. "Immunoexpression of Androgen Receptors in the Reproductive Tract of the Stallion." Annals of the New York Academy of Sciences 1040, no. 1 (2005): 227–29. http://dx.doi.org/10.1196/annals.1327.030.

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Merkl, M., R. Ertl, S. Handschuh, C. Aurich, and S. Schäfer-Somi. "The cholesterol transporter ABCA1 is expressed in stallion spermatozoa and reproductive tract tissues." Theriogenology 85, no. 6 (2016): 1080–89. http://dx.doi.org/10.1016/j.theriogenology.2015.11.019.

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Johnson, Gillian P., Andrew T. Lloyd, Cliona O'Farrelly, Kieran G. Meade та Sean Fair. "Comparative genomic identification and expression profiling of a novel β-defensin gene cluster in the equine reproductive tract". Reproduction, Fertility and Development 28, № 10 (2016): 1499. http://dx.doi.org/10.1071/rd14345.

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β-defensins are small cationic proteins with potent immunoregulatory and antimicrobial activity. The number of genes encoding these peptides varies significantly between and within species but they have not been extensively characterised in the horse. Here, we describe a systematic search of the Equus caballus genome that identified a cluster of novel β-defensin genes on Chromosome 22, which is homologous to a cluster on bovine Chromosome 13. Close genomic matches were found for orthologs of 13 of the bovine genes, which were named equine β-defensins (eBD) 115, eBD116, eBD117, eBD119, eBD120,
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Glenton, L. Y., C. D. Marth, G. F. Browning та N. Krekeler. "Expression of equine β-defensin 110, 123 and 124 genes in the stallion reproductive tract". Journal of Equine Veterinary Science 34, № 1 (2014): 69. http://dx.doi.org/10.1016/j.jevs.2013.10.043.

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Veeramachaneni, D. N. Rao, and Heywood R. Sawyer. "Use of Semen as Biopsy Material for Assessment of Health Status of the Stallion Reproductive Tract." Veterinary Clinics of North America: Equine Practice 12, no. 1 (1996): 101–10. http://dx.doi.org/10.1016/s0749-0739(17)30297-3.

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Malmgren, L., E. Olsson Engvall, A. Engvall, and A. Albihn. "Aerobic Bacterial Flora of Semen and Stallion Reproductive Tract and its Relation to Fertility Under Field Conditions." Acta Veterinaria Scandinavica 39, no. 2 (1998): 173–82. http://dx.doi.org/10.1186/bf03547790.

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Tesis sobre el tema "Stallion reproductive tract"

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Nam, Bora. "EVOLUTION OF EQUINE ARTERITIS VIRUS DURING PERSISTENT INFECTION IN THE REPRODUCTIVE TRACT OF THE STALLION AND THE MALE DONKEY." UKnowledge, 2017. https://uknowledge.uky.edu/gluck_etds/34.

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Equine arteritis virus (EAV) establishes persistent infection in the stallion reproductive tract, and the carrier stallion continues to shed virus in semen for weeks to years or lifelong. The objective of this study was to elucidate the intra-host evolution of EAV during persistent infection in stallions. Seven EAV seronegative stallions were experimentally infected with EAV KY84 strain and followed for 726 days post-infection, and sequential clinical samples including semen were collected for virus isolation and next-generation sequencing (NGS). In addition, archived sequential semen samples
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2

Carossino, Mariano. "CELLULAR AND MOLECULAR BASIS OF EQUINE ARTERITIS VIRUS PERSISTENT INFECTION IN THE STALLION REPRODUCTIVE TRACT: CHARACTERIZATION OF LOCAL HOST-PATHOGEN INTERACTIONS MEDIATING LONG-TERM VIRAL PERSISTENCE." UKnowledge, 2018. https://uknowledge.uky.edu/gluck_etds/35.

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Equine arteritis virus (EAV) has a global impact on the equine industry being the causative agent of equine viral arteritis (EVA), a reproductive, respiratory, and systemic disease of equids. A distinctive feature of EAV infection is that it establishes long-term persistent infection in the reproductive tract of stallions and is continuously shed in the semen (carrier state). Recent studies showed that long-term persistence is associated with a specific allele of the CXCL16 gene (CXCL16S). However, the cellular and molecular mechanisms underlying the establishment and maintenance of persistent
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Capítulos de libros sobre el tema "Stallion reproductive tract"

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STEINER, J. "Stallion Reproductive Tract." In Atlas of Equine Endoscopy. Elsevier, 2004. http://dx.doi.org/10.1016/b978-0-323-01848-7.50015-4.

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Brinsko, Steven P., Terry L. Blanchard, Dickson D. Varner, et al. "Surgery of the Stallion Reproductive Tract." In Manual of Equine Reproduction. Elsevier, 2011. http://dx.doi.org/10.1016/b978-0-323-06482-8.00025-9.

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Blanchard, Terry L., Dickson D. Varner, James Schumacher, Charles C. Love, Steven P. Brinsko, and Sherri L. Rigby. "Surgery of the Stallion Reproductive Tract." In Manual of Equine Reproduction. Elsevier, 2003. http://dx.doi.org/10.1016/b0-32-301713-4/50017-0.

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TIBARY, AHMED. "Endoscopy of the Reproductive Tract in the Stallion." In Current Therapy in Equine Reproduction. Elsevier, 2007. http://dx.doi.org/10.1016/b978-0-7216-0252-3.50037-0.

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LEY, WILLIAM B., and STEVEN H. SLUSHER. "Infertility and Diseases of the Reproductive Tract of Stallions." In Current Therapy in Large Animal Theriogenology. Elsevier, 2007. http://dx.doi.org/10.1016/b978-072169323-1.50006-4.

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