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A simple model of estrous cycle negative and positive feedback regulation of GnRH secretion

机译:GnRH分泌中的发言循环阴性阳性反馈调节的简单模型

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The gonadal steroids estradiol and progesterone exert critical suppressive and stimulatory actions upon the brain to control gonadotropin-releasing hormone (GnRH) release that drives the estrous/menstrual cycle. A simple model for understanding these interactions is proposed in which the activity of the "GnRH pulse generator" is restrained by post-ovulation progesterone secretion to bring about the estrus/luteal phase slowing of pulsatile gonadotropin release, while the activity of the "GnRH surge generator" is primed by the rising follicular phase levels of estradiol to generate the pre-ovulatory surge. The physiological fluctuations in estradiol levels across the cycle are considered to clamp the GnRH pulse generator output at a constant level. Independent pulse and surge generator circuitries regulate the excitability of different compartments of the GnRH neuron. As such, GnRH secretion through the cycle is determined simply by the summed influence of the estradiol-clamped, progesterone-regulated pulse and estradiol-regulated surge generators on the GnRH neuron.
机译:Gonadal类固醇雌二醇和孕酮在大脑上施加临界抑制和刺激作用,以控制驱动鼻周性/月经周期的促进促胆量的释放激素(GNRH)释放。提出了一种理解这些相互作用的简单模型,其中“GNRH脉冲发生器”的活性由排卵后孕酮分泌抑制,以引入脉动腺癌释放的患者的雌激素/肺相位慢,而“GNRH浪涌的活动”发电机“由雌二醇的上升卵泡相水平提升,以产生预排卵涌涌。遍布整个循环中的雌二醇水平的生理波动被认为以恒定的水平钳位GNRH脉冲发生器输出。独立脉冲和浪涌发电机电路调节GnRH神经元不同隔室的兴奋性。因此,通过循环的GnRH分泌通过雌二醇夹紧,孕酮调节脉冲和雌二醇调节的浪涌发生器对GnRH神经元的总和来确定。

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