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首页> 外文期刊>American Journal of Physiology >A biomathematical model of time-delayed feedback in the human male hypothalamic-pituitary-Leydig cell axis.
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A biomathematical model of time-delayed feedback in the human male hypothalamic-pituitary-Leydig cell axis.

机译:人类男性下丘脑-垂体-Leydig细胞轴中的时间延迟反馈的生物数学模型。

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摘要

We develop, implement, and test a feedback and feedforward biomathematical construct of the male hypothalamic [gonadotropin-releasing hormone (GnRH)]-pituitary [luteinizing hormone (LH)]-gonadal [testosterone (Te)] axis. This stochastic differential equation formulation consists of a nonstationary stochastic point process responsible for generating episodic release of GnRH, which is modulated negatively by short-loop (GnRH) and long-loop (Te) feedback. Pulsatile GnRH release in turn drives bursts of LH secretion via an agonistic dose-response curve that is partially damped by Te negative feedback. Circulating LH stimulates (feedforward) Te synthesis and release by a second dose response. Te acts via negative dose-responsive feedback on GnRH and LH output, thus fulfilling conditions of a closed-loop control system. Four computer simulations document expected feedback performance, as published earlier for the human male GnRH-LH-Te axis. Six other simulations test distinct within-model coupling mechanisms to link a circadian modulatory input to a pulsatile control node so as to explicate the known 24-h variations in Te and, to a lesser extent, LH. We conclude that relevant dynamic function, internodal dose-dependent regulatory connections, and within-system time-delayed coupling together provide a biomathematical basis for a nonlinear feedback-feedforward control model with combined pulsatile and circadian features that closely emulate the measurable output activities of the male hypothalamic-pituitary-Leydig cell axis.
机译:我们开发,实施和测试男性下丘脑[促性腺激素释放激素(GnRH)]-垂体[促黄体生成激素(LH)]-性腺[睾丸激素(Te)]轴的反馈和前馈生物数学结构。此随机微分方程公式由负责产生GnRH的情节释放的非平稳随机点过程组成,该过程由短环(GnRH)和长环(Te)反馈进行负调制。脉冲GnRH释放通过激动剂剂量反应曲线驱动LH分泌爆发,该剂量反应曲线被Te负反馈部分抑制。循环的LH通过第二次剂量反应刺激(前馈)Te合成和释放。 Te通过对GnRH和LH输出的负剂量响应反馈起作用,从而满足闭环控制系统的条件。四个计算机模拟记录了预期的反馈性能,如先前针对人类男性GnRH-LH-Te轴发布的。其他六个仿真测试了不同的模型内耦合机制,以将昼夜节律的调制输入链接到脉动控制节点,以阐明Te的已知24小时变化,并在较小程度上阐明LH。我们得出的结论是,相关的动态功能,节点间剂量依赖性调节连接和系统内时间延迟耦合在一起为非线性反馈前馈控制模型提供了生物数学基础,该模型具有紧密模拟脉搏和昼夜节律特征的可测量输出活动。男性下丘脑-垂体-Leydig细胞轴。

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