803 resultados para Semen


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We have modified a technique which uses a single pair of primer sets directed against homologous but distinct genes on the X and Y chromosomes, all of which are coamplified in the same reaction tube with trace amounts of radioactivity. The resulting bands are equal in length, yet distinguishable by restriction enzyme sites generating two independent bands, a 364 bp X-specific band and a 280 bp Y-specific band. A standard curve was generated to show the linear relationship between X/Y ratio average vs. %Y or %X chromosomal content. Of the 51 purified amniocyte DNA samples analyzed, 16 samples showed evidence of high % X contamination while 2 samples demonstrated higher % Y than the expected 50% X and 50% Y chromosomal content. With regards to the 25 processed sperm samples analyzed, X-sperm enrichment was evident when compared to the primary sex ratio whereas Y-sperm was enriched when we compared before and after selection samples.

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Plantaginis Semen is commonly used in traditional medicine to treat edema, hypertension, and diabetes. The commercially available Plantaginis Semen in China mainly comes from three species. To clarify the chemical composition and distinct different species of Plantaginis Semen, we established a metabolite profiling method based on ultra high performance liquid chromatography with electrospray ionization quadrupole time-of-flight tandem mass spectrometry coupled with elevated energy technique. A total of 108 compounds, including phenylethanoid glycosides, flavonoids, guanidine derivatives, terpenoids, organic acids, and fatty acids, were identified from Plantago asiatica L., P. depressa Willd., and P. major L. Results showed significant differences in chemical components among the three species, particularly flavonoids. This study is the first to provide a comprehensive chemical profile of Plantaginis Semen, which could be involved into the quality control, medication guide, and developing new drug of Plantago seeds.

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Las majadas de ovinos funcionan socialmente dentro de un orden jerárquico que se encuentra formado por individuos dominantes (alfa) y subordinados (omega). El macho dominante es el encargado de la reproducción (Ungerfeld & Núñez, 2011). El animal más agresivo es el que ocupa la posición más alta y no está sujeto a las mismas presiones experimentadas por el resto de los miembros. La sexualidad y el comportamiento agresivo cambian en relación al ciclo reproductivo y al fotoperiodo. Así, los animales menos afectados por el fotoperiodo permanecen más agresivos y con mayor incremento en la libido, mientras que la actividad sexual de los animales de baja jerarquía es generalmente suprimida en presencia de los dominantes (Aguirre, 2004). Cuando se insemina artificialmente se busca calidad y congelabilidad seminal que será proporcionada por un buen carnero independientemente de su ranking social en el grupo. (Guerrero et al., 2009). El objetivo de este trabajo fue evaluar el efecto de la jerarquía social sobre la calidad seminal y la congelabilidad del eyaculado de carneros alfa y omega.

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Los factores que influyen en la crioconservación de semen son la calidad, el manejo y los métodos de congelación (Lozano, 2009). La supervivencia y vitalidad espermática post-descongelación en la crioconservación está relacionada con los protocolos de procesamiento del semen y la dilución (Andrabi, 2009). Existen parámetros que permiten valorar la calidad seminal como la Motilidad Individual Progresiva (MIP), la Vitalidad Espermática (VE) y la tasa de Anormalidades en el semen descongelado que se ven afectados por los tiempos de equilibrio. Además la motilidad espermática y la vitalidad post-descongelación se pueden ver afectadas con el uso de los diferentes diluyentes tanto sintéticos (lecitina de soya) como orgánicos (yema de huevo). El objetivo fue comparar la eficacia del diluyente AndroMed® (TRIS + Lecitina de soya) y Triladyl® (TRIS + Yema de Huevo) y tres tiempos de equilibramiento de acuerdo a los protocolos establecidos en la crioconservación de semen de toro.

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Arsenite is a major environmental toxicant that is well known to cause reproductive injury. The sperm protective potential of Ageratum conyzoides Linn in arsenic-treated rats was carried out in this study taking advantage of the antioxidant constituents and its androgenic activities. Twenty-four male albino rats aged 16 weeks, weighing 225 to 228g were used. They were grouped into 4(A-Da) with each group containing 6 rats. Group A was orally treated with 100mg/kg ethanol leaf extract of Ageratum conyzoides L., daily for 14 days, group B (single oral dose of sodium arsenite 2.5 mg/kg body weight), C (Ageratum conyzoides extract daily for 14 days and sodium arsenite (SA) given on the 14th day) and group D (Propylene glycol as negative control). It was observed that group B had a more lower (p<0.05) percentage motility (26.7±6.67%) when compared across the groups while group A had a significantly higher (p<0.05) mean value (63.3±3.33%). The sperm motility of rats in group D was significantly higher (p<0.05) than groups B and C. This implies that A. conyzoides extract had no adverse effect on the sperm motility of the rats and also ameliorates the adverse effect of arsenite on sperm motility. The mean value obtained for sperm liveability, semen volume and Sperm concentration followed a similar pattern although, the differences were not significant (p>0.05) for semen volume and the Sperm concentration of rats across the groups. The total sperm abnormality obtained across the groups ranges between 10.44 and 14.27% with group B treated with sodium arsenite (SA) having the highest value when compared with groups A and D, although, the differences were not significant (P>0.05). The study concluded that ethanol leaf extract of Ageratum conyzoides has no negative effect on sperm motility, liveability characteristics and morphology and also protected spermatozoa against arsenic reproductive toxicity in wistar strain albino rats..

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Tesis (Médico Veterinario). -- Universidad de La Salle. Facultad de Ciencias Agropecuarias. Programa de Medicina Veterinaria, 2014

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Aim The purpose of this study was to evaluate the semen profiles of bicycle taxi cyclists and healthy controls in Mangochi district, Malawi. Methods Semen samples were collected from young bicycle taxi cyclists after two to three days of sexual abstinence. A control group, comprising young men who were not bicycle taxi operators also submitted semen samples. Samples were left to liquefy for 30 minutes before measurements were conducted of volume, concentration, total motility, and progressive motility. This was followed by preparation of morphology slides. Light microscopy was used for sperm analysis. Results Semen parameters such as volume (1.66 ± 0.18 mL vs. 3.64 ± 0.17 mL; p = 0.0001), concentration (28.31 ± 4.33 x 106/mL vs. 54.95 ± 5.93 x 106/ mL; p = 0.02) , total motility (56.98% ± 8.22% vs. 56.98% ± 8.22%; p = 0.03), progressive motility (22.57% ± 3.35% vs. 59.69% ± 4.82%; p = 0.004), and morphology (6.98% ± 3.23% vs. 19.73% ± 2.32%; p = 0.006) were significantly reduced in the bicycle taxi cyclists compared to the healthy controls. Conclusion In this case-control study, bicycle taxi operators had lower semen volume, concentration, total motility, and progressive motility, as well as a higher concentration of abnormally shaped spermatocytes, compared to healthy controls.

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Tesis (Médico Veterinario). -- Universidad de La Salle. Facultad de Ciencias Agropecuarias. Programa de Medicina Veterinaria, 2014

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Bogotá (Colombia): Universidad de La Salle. Facultad de Ciencias Agropecuarias. Maestría en Ciencias Veterinarias

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En la actualidad los resultados de la combinación del semen sexado y superovulación (SOV) no han sido muy alentadores debido a la baja cantidad de espermatozoides así como a la corta vida media de los mismos. En un trabajo previo realizado en Brasil en vacas Holstein, se demostró que usando el protocolo de SOV P36/Lh60 e inseminando con semen sexado a las 18 y 30 horas de aplicado el inductor de la ovulación (intervalo de 12 hs entre inseminaciones) se obtiene igual cantidad de estructuras transferibles que inseminando a las 12 y 24 horas con semen no sexado. El objetivo de esta investigación fue ajustar las horas de la inseminación artificial (IA) en vacas superovuladas e inseminadas con semen sexado para lograr mejor sincronía con las ovulaciones y así aumentar la cantidad de embriones transferibles. Este ajuste evaluó 2 momentos de IA en los cuales el intervalo entre ambas se disminuyó a 6 hs. Para esto se usaron 30 vacas Holstein en producción superovuladas con el protocolo P36/LH60 y se dividieron en tres grupos en forma aleatoria; en el grupo IA18/30 (control; n=10) las inseminaciones se realizaron a las 18 horas y 30 hs de la aplicación del inductor de la ovulación (GnRh); en el grupo IA18/24 (n=10) sé inseminó a las 18 y 24 hs de la GnRH y al grupo IA24/30 (n=10) se inseminó a las 24 y 30 (se usó 2.1x106 espermatozoides sexados / inseminación). No se encontró diferencia estadística en los tres grupos, sin embargo el grupo IA18/24 mostró ventaja numérica sobre el grupo IA24/30 y el Control (4,1±1,5 vs 1,3±0,4 y 1,9±0,6 respectivamente) en la cantidad de embriones transferibles, con lo que concluimos que el ajuste en las horas de IA con semen sexado en vacas Holstein superovuladas puede ser usado con resultados similares a los trabajos anteriores

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Bogotá (Colombia): Universidad de La Salle. Facultad de Ciencias Agropecuarias. Programa de Medicina Veterinaria

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Bogotá (Colombia): Universidad de La Salle. Facultad de Ciencias Agropecuarias. Programa de Medicina Veterinaria

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Objetivou-se foi avaliar a fertilização artificial e a duração da motilidade espermática em pacus com diferentes doses inseminantes, volumes de água e preservação do sêmen in natura. Foram realizados quatro experimentos para avaliação do efeito de doses inseminantes (7x10³, 7x10(4), 7x10(5), 7x10(6) e 7x10(7) espermatozoides ovócito-1) sobre a fertilização artificial dos ovócitos; do efeito do volume de água (0,5; 15,0; 30,0; 45,0 e 60,0 mL de água mL-1 de ovócitos) com doses inseminantes de 105.481 e 210.963 espermatozoides ovócito-1; do efeito de diluição do sêmen (0,005; 0,05; 0,5 e 5,0 µL de sêmen mL-1 de água) sobre a duração da motilidade espermática; e do efeito do armazenamento a 15 ºC por 9 h sobre a duração da motilidade espermática e o índice de sobrevivência espermática. Os maiores resultados obtidos foram: doses inseminantes entre 7x10³ e 7x10(7) espermatozoides ovócito-1; 15 a 60 mL de água mL-1 de ovócitos; diluição de 0.005 µL sêmen mL-1 de água e 98,65% de sobrevivência espermática até o tempo de preservação de 2h45min36s. A preservação a 15ºC por 9 horas não influencia a duração da motilidade espermática. As maiores taxas de fertilização podem ser observadas no emprego de 0,27 a 270 µL de sêmen mL-1 de ovócitos, com 15 a 60 mL de água para ativação.