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The timing of ovulation and insemination schedules in superstimulated cattle

机译:超刺激牛排卵和授精时间表的时间安排

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The development of treatments that control follicular wave dynamics during the bovine estrous cycle has resulted in interesting possibilities for the precise control of follicular wave emergence and the time of ovulation. For superstimulation, follicular wave emergence can be controlled by ultrasound-guided follicle ablation with FSH treatments initiated 1 or 2d later, or injection of estradiol combined with progesterone at the time of insertion of a progestogen releasing device and FSH treatments beginning 4d later. These are the most widely used protocols for superstimulation of donor cows because they offer the convenience of being able to initiate treatments quickly and at a self-appointed time, without reducing the number of transferable embryos. However, these protocols still require precise estrus detection of donors following superstimulation in order to conduct AI at the most appropriate time. Recent studies have been designed to develop superstimulation protocols that involve fixed-time AI of donors, without regard to estrus detection. Results presented herein indicate that delaying the removal of a progestogen releasing device, combined with the administration of GnRH or porcine LH (pLH) 12 or 24h later results in predictable, synchronous ovulations, permitting fixed-time AI without reducing the numbers or quality of embryos. These protocols facilitate the application of on-farm embryo transfer programs because they are practical, easy to administer by farm personnel, and more importantly, they eliminate the need for detecting estrus.
机译:控制牛发情周期中卵泡波动态的治疗方法的发展为精确控制卵泡波的出现和排卵时间带来了有趣的可能性。对于超刺激,卵泡波的出现可以通过超声引导的滤泡消融和1或2d之后开始的FSH治疗来控制,或者在插入孕激素释放装置和4d之后开始的FSH治疗时注射雌二醇联合孕酮。这些是用于过度刺激供体母牛的最广泛使用的方案,因为它们提供了能够在自己指定的时间快速启动治疗的便利,而不会减少可移植胚胎的数量。但是,这些协议仍然需要在超刺激后对供体进行精确的发情检测,以便在最合适的时间进行AI。最近的研究被设计为开发涉及供体的固定时间AI的超刺激方案,而不考虑发情检测。本文提供的结果表明,延迟孕激素释放装置的移除,与GnRH或猪LH(pLH)12或24小时后的施用相结合,可导致可预测的同步排卵,允许固定时间的AI而不降低胚胎的数量或质量。这些协议实用,易于农场人员管理,因此有助于应用农场上的胚胎移植程序,更重要的是,它们消除了检测发情的需求。

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