Factors that control the efficacy of group Ia synapses in alpha-motoneurons.

Journal de physiologie Pub Date : 1988-01-01
R E Burke, J W Fleshman, I Segev
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引用次数: 0

Abstract

1.) This review considers factors that produce systematic variations in the amplitude of monosynaptic group Ia EPSPs in triceps surae alpha-motoneurons belonging to different motor unit types. 2.) Anatomical studies using horseradish peroxidase to label functionally-identified group Ia afferents and motoneurons postsynaptic to them, and combined anatomicalelectro-physiological studies of type-identified alpha-motoneurons, have constrained some of the factors that produce variations in peak Ia EPSP amplitude in different cells. 3.) Computer modeling studies based on these experimental data, together with other evidence in the literature, suggest that the major factor that produces systematic variation in Ia EPSP amplitudes in type FF, FR, and S motoneurons is a corresponding variation in the density of active group Ia synapses. 4.) Although EPSP amplitudes are also affected by the relative conductance of the somatic membrane, as reflected in the dendritic-to-somatic conductance ratio, it is possible that at least some of this influence is an artifact produced by microelectrode penetration.

控制α -运动神经元Ia组突触作用的因素。
1.) 本文综述了在属于不同运动单元类型的三头肌表面α -运动神经元中产生单突触Ia组epsp振幅系统性变化的因素。2)。利用辣根过氧化物酶标记功能识别的Ia组传入事件和突触后运动神经元的解剖学研究,以及结合类型识别的α -运动神经元的解剖-电生理研究,已经限制了在不同细胞中产生Ia EPSP峰值振幅变化的一些因素。3.) 基于这些实验数据的计算机建模研究以及文献中的其他证据表明,在FF、FR和S型运动神经元中产生Ia EPSP振幅系统性变化的主要因素是活跃的Ia组突触密度的相应变化。4)。虽然EPSP振幅也受到体细胞膜的相对电导的影响,正如树突-体细胞电导比所反映的那样,但这种影响至少有一部分可能是微电极渗透产生的伪影。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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