首页> 外文期刊>Theriogenology >Testicular thermoregulation in Bos indicus, crossbred and Bos taurus bulls: relationship with scrotal, testicular vascular cone and testicular morphology, and effects on semen quality and sperm production
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Testicular thermoregulation in Bos indicus, crossbred and Bos taurus bulls: relationship with scrotal, testicular vascular cone and testicular morphology, and effects on semen quality and sperm production

机译:牛,杂交牛和金牛座的睾丸温度调节:与阴囊,睾丸血管锥和睾丸形态的关系,以及对精液质量和精子产生的影响

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Mechanisms of testicular thermoregulation, the relationship of scrotal, testicular vascular cone (TVC), and testicular morphology with thermoregulatory capability, and their effects on semen quality and sperm production were studied in 20 Bos indicus, 28 crossbred, and 26 Bos taurus bulls. The ratio of testicular artery length and volume to testicular volume were larger (P < 0.05) in B. indicus and crossbred bulls than in B. taurus bulls (1.03 and 0.94 cm/cm(2). versus 0.48 cm/cm(3); 0.034 and 0.047 ml/cm(3) versus 0.017 ml/cm(3), respectively). Testicular artery wall thickness (average 192.5, 229.0, and 290.0 mum, respectively) and arterial-venous blood distance in the TVC (average 330.5, 373.7, and 609.4 pm, respectively) were smallest in B. indicus, intermediary in crossbred, and greatest in B. taurus bulls (P < 0.05); the proximity between arterial and venous blood was consistent with the estimated decrease in arterial blood temperature after passage through the TVC (5.9, 5.0, and 2.9 degreesC, in B. indicus, crossbred, and B. taurus bulls, respectively). In crossbred and B. taurus bulls, there was a positive top-to-bottom scrotal temperature gradient and a negative testicular subtunic temperature gradient. However, in B. indicus bulls, both scrotal and testicular subtunic temperatures gradients were positive. Differences in the vascular arrangement, characteristics of the artery (e.g. wall thickness) or thickness of the tunica albuginea may have affected the testicular arterial blood and subtunic temperatures in B. indicus bulls. Better testicular thermoregulatory capability was associated with increased scrotal shape (pendulosity), testicular artery length and volume, and top-to-bottom gradient of the distance between the artery wall and the veins in the TVC. Increased semen quality was associated with increased testicular volume and scrotal subcutaneous (SQT) temperature gradient, and with decreased scrotal surface and testicular temperatures. Increased sperm production was associated with increased testicular artery volume, testicular volume, and SQT temperature gradient, and with decreased testicular artery wall thickness, scrotal circumference (SC), and scrotal surface, testicular subtunic, and epididymal temperatures. In conclusion, morphology of the TVC may contribute to the greater resistance of B. indicus bulls to high ambient temperatures by conferring a better testicular blood supply and by facilitating heat transfer between the testicular artery and veins. Testicular thermoregulation was associated with opposing scrotal and testicular subtunic temperatures gradients only in crossbred and B. taurus bulls. Scrotal, TVC, and testicular morphology influence testicular thermoregulatory capability and were associated with differences in semen quality and sperm production
机译:在20头Bos indicus,28头杂种和26头Bos taurus公牛中研究了睾丸温度调节的机制,阴囊,睾丸血管锥(TVC)和睾丸形态与温度调节能力的关系,以及它们对精液质量和精子产生的影响。在印度短吻鳄和杂交牛中,睾丸动脉长度和体积与睾丸体积的比(金牛座公牛)的比(P <0.05)更大(P3为0.93 cm / cm(2),金牛为B. taurus公牛比0.48 cm / cm(3)。 ; 0.034和0.047 ml / cm(3)分别为0.017 ml / cm(3))。 TVC中的睾丸动脉壁厚度(分别为平均192.5、229.0和290.0微米)和动静脉血距离(分别为平均330.5、373.7和609.4 pm)在印度小B中最小,杂交中居中间,最大在金牛座牛群中(P <0.05);动脉和静脉血之间的接近度与通过TVC后估计的动脉血液温度降低相符(分别在印度印度豹,杂交和金牛座牛中分别为5.9、5.0和2.9摄氏度)。在杂种和金牛座牛中,阴囊的上下温度梯度为正,睾丸亚膜下温度梯度为负。然而,在印度小牛(B. indicus)中,阴囊和睾丸亚膜温度梯度均为正值。血管排列,动脉特征(例如壁厚)或白膜厚度的差异可能影响印度公牛的睾丸动脉血液和亚膜温度。更好的睾丸温度调节能力与阴囊形状(斜摆),睾丸动脉长度和体积增加以及TVC中动脉壁和静脉之间的距离的从上到下的梯度有关。精液质量的提高与睾丸体积的增加和阴囊皮下温度梯度的升高有关,与阴囊表面和睾丸温度的降低有关。精子产量增加与睾丸动脉体积,睾丸体积和SQT温度梯度增加,睾丸动脉壁厚度,阴囊周长(SC)以及阴囊表面,睾丸亚膜下膜和附睾温度降低有关。总之,TVC的形态可通过提供更好的睾丸血液供应和促进睾丸动脉与静脉之间的热传递来促进印度双歧杆菌对高温的更大抵抗力。仅在杂交和金牛座牛中,睾丸温度调节与相反的阴囊和睾丸亚膜温度梯度相关。阴囊,TVC和睾丸形态会影响睾丸温度调节能力,并与精液质量和精子产生差异有关

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