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肌肉神经接点终板静息电压波动的机制及相应的去噪范例。

Mechanisms of stationary voltage fluctuation in the neuromuscular junction endplate and corresponding denoising paradigms.

机构信息

School of Mathematics and Statistics, Beijing Technology and Business University, Beijing , 100048, PR China.

Research Center for Statistical Science, Beijing Technology and Business University, Beijing, 100048, PR China.

出版信息

Eur Biophys J. 2024 Aug;53(5-6):299-310. doi: 10.1007/s00249-024-01715-x. Epub 2024 Jul 15.

Abstract

The neuromuscular junction (NMJ) has an elaborate anatomy to ensure agile and accurate signal transmission. Based on our formerly obtained expressions of the thermal and conductance induced voltage fluctuations, in this paper, the mechanisms underlying the conductance-induced voltage fluctuation are characterized from two aspects: the scaling laws with respect to either of the two system-size factors, the number of receptors or the membrane area; and the "seesaw effect" with respect to the intensive parameter, the concentration of acetylcholine. According to these mechanisms, several aspects of the NMJ anatomy are explained from a denoising perspective. Finally, the power spectra of the two types of voltage fluctuations are characterized by their specific scaling laws, based on which we explain why the endplate noise has the low-frequency property that is described by the term "seashell sound".

摘要

神经肌肉接头 (NMJ) 具有精细的解剖结构,以确保灵活、准确的信号传递。基于我们之前获得的热诱导和电导诱导电压波动的表达,在本文中,从两个方面对电导诱导电压波动的机制进行了特征描述:与两个系统大小因素之一(受体数量或膜面积)的标度定律;以及与强度参数(乙酰胆碱浓度)的“跷跷板效应”。根据这些机制,从去噪的角度解释了 NMJ 解剖结构的几个方面。最后,根据特定的标度定律对这两种类型的电压波动的功率谱进行了特征描述,基于此,我们解释了为什么终板噪声具有被称为“贝壳声”的低频特性。

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