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A comparison of the neuroendocrine mechanisms underlying the initiation of the preovulatory LH surge in the human, Old World monkey and rodent

机译:人类,旧大陆猴和啮齿动物排卵前LH激增起因的神经内分泌机制的比较

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摘要

As recognized for decades, the role of the rodent hypothalamus in timing the LH surge is deterministic and mediated by a GnRH discharge that is generated by an obligatory interaction in the preoptic area (POA) between a threshold level of estradiol and a circadian neural signal: a view consistent with contemporary kisspeptinocentric models of the estrous cycle. In higher primates, generation of the LH surge is emancipated from control by the POA. Woman represents the exemplar of the system in higher primates, as the LH surge appears to unfold in the absence of a midcycle GnRH discharge being generated instead by facilitatory interaction between a pulsatile GnRH input to the pituitary and an action of ovarian estradiol. The neurobiology of GnRH pulse generation is only beginning to emerge but from a translational perspective this aspect of hypothalamic function is critical for understanding the human menstrual cycle and how it may be perturbed.
机译:几十年来,啮齿类动物下丘脑在定时LH激增中的作用是确定性的,并由GnRH放电介导,GnRH放电是由前视区(POA)在雌二醇的阈值水平与昼夜节律神经信号之间的强制相互作用产生的:这种观点与当代发情周期的以亲吻肽为中心的模型相一致。在高等灵长类动物中,LH激增的产生是从POA的控制中解放出来的。女人代表高等灵长类动物的系统典范,因为在没有中周期GnRH放电的情况下,LH激增似乎得以展开,而不是通过向垂体输入的搏动性GnRH和卵巢雌二醇的作用之间的促进相互作用而产生的。 GnRH脉冲产生的神经生物学才刚刚开始出现,但从翻译的角度来看,下丘脑功能的这一方面对于理解人类的月经周期及其可能的扰动至关重要。

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