Suppr超能文献

龙虾慢适应性牵张感受器神经元的冲动发放及其数值模拟。

Impulse firing in the slowly adapting stretch receptor neurone of lobster and its numerical simulation.

作者信息

Gestrelius S, Grampp W

出版信息

Acta Physiol Scand. 1983 Jul;118(3):253-61. doi: 10.1111/j.1748-1716.1983.tb07269.x.

Abstract

A mathematical model of the electrical activity of the slowly adapting lobster stretch receptor neurone is presented. The model is based on constant field and state transition theory and employs measurements of the kinetics of membrane currents in sub- and near-threshold voltage regions (Gestrelius, Grammp & Sjölin 1981, Gestrelius & Grampp 1983, Gestrelius, Grampp & Sjölin 1983, Edman, Gestrelius & Grampp 1983). In addition to the classical action potential generating mechanisms (Hodgkin & Huxley 1952) the model also includes the processes of slow Na and K inactivation, ion flux dependent changes of the intracellular Na+ and K+ concentrations, and the activity of an electrogenic Na-K pump sensitive to intracellular Na+ accumulation. The model is able to correctly simulate recorded action potentials as well as repetitive firing both with respect to stimulus dependence (sensitivity) and time dependence (adaptation) during prolonged electrical stimulation. In the living cell firing adaptation is found to consist of an initial phase with a relatively high, and a later phase with a lower rate of adaptation. From the model properties it can be concluded that the initial phase is mainly caused by the slow Na inactivation, while the later phase is due to a slow Na+ influx dependent pump current activation.

摘要

本文提出了一种缓慢适应的龙虾牵张感受器神经元电活动的数学模型。该模型基于恒定场和状态转换理论,并采用了在亚阈值和近阈值电压区域膜电流动力学的测量结果(Gestrelius、Grammp和Sjölin,1981年;Gestrelius和Grampp,1983年;Gestrelius、Grammp和Sjölin,1983年;Edman、Gestrelius和Grampp,1983年)。除了经典的动作电位产生机制(Hodgkin和Huxley,1952年)外,该模型还包括缓慢的钠和钾失活过程、离子通量依赖性细胞内钠和钾浓度的变化,以及对细胞内钠积累敏感的电生钠钾泵的活动。该模型能够在长时间电刺激期间,就刺激依赖性(敏感性)和时间依赖性(适应性)而言,正确模拟记录的动作电位以及重复放电。在活细胞中,放电适应被发现由一个具有相对较高适应率的初始阶段和一个具有较低适应率的后期阶段组成。从模型特性可以得出结论,初始阶段主要由缓慢的钠失活引起,而后期阶段则是由于缓慢的钠内流依赖性泵电流激活。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验