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首页> 外文期刊>Annals of the New York Academy of Sciences >Modeling Myometrial Smooth Muscle Contraction
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Modeling Myometrial Smooth Muscle Contraction

机译:肌层平滑肌收缩建模

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摘要

Existing models of uterine contractions assumed a top-down approach in which the function at the organ or tissue level was explained by the behavior of smaller basic units. A new model of the excitation-contraction process in a single myometrial myocyte was recently developed. This model may be used in a bottom-up approach for the description of the contribution of cellular phenomena to the overall performance of the tissue or organ. In this review, we briefly survey current knowledge of uterine electrophysiology and contractility as well as current modeling techniques, which were successfully used to study the function of various types of muscle cells. In the physiological part of the review, we relate to mechanisms of intracellular Ca~(2+) control, Ca~(2+) oscillations, and Ca~(2+) waves and to the various membranal transport mechanisms regulating ion exchange between the intracellular and extracellular spaces. In addition, we describe the process leading from excitation to contraction. In the modeling part of the review, we present the Hodgkin-Huxley (HH) model of excitation in the squid axon as well as models of Ca~(2+) control and the latch-bridge model of Hai and Murphy describing the kinetics of smooth muscle cell (SMC) contraction. We also present integrative models describing more than one of these phenomena. Finally, we suggest how these modeling techniques can be applied to modeling myometrial contraction and thus may significantly contribute to current efforts of research of uterine function.
机译:现有的子宫收缩模型采用自上而下的方法,其中器官或组织水平的功能由较小的基本单位的行为来解释。最近开发了一种在单个肌层肌细胞中激发-收缩过程的新模型。该模型可用于自下而上的方法中,用于描述细胞现象对组织或器官整体性能的贡献。在这篇综述中,我们简要调查了子宫电生理和收缩性的最新知识以及当前的建模技术,这些知识已成功用于研究各种类型的肌肉细胞的功能。在本综述的生理学部分,我们涉及细胞内Ca〜(2+)控制,Ca〜(2+)振荡和Ca〜(2+)波的机制,以及调节细胞间Ca〜(2+)之间离子交换的各种膜转运机制。细胞内和细胞外空间。此外,我们描述了从激发到收缩的过程。在本综述的建模部分,我们介绍了鱿鱼轴突中的霍奇金-赫克斯利(HH)激发模型,Ca〜(2+)控制模型以及Hai和Murphy的闩锁桥模型,它们描述了平滑肌细胞(SMC)收缩。我们还提供了描述这些现象中不止一种的集成模型。最后,我们建议如何将这些建模技术应用于子宫肌层收缩建模,从而可能对当前子宫功能的研究做出重大贡献。

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