[Contractile Tone and Contraction as Important Physiological Properties of Terminals on the Processes of Living Neurons].

O S Sotnikov, N Yu Vasyagina, L A Podol'skaya
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Abstract

An attempt to summarize some static morphological renderings of reversible structural alterations of nervous processes, as well as receptor and synaptic terminals, to compare them with the mechanisms of actual transformation of living neurons and to find a common kinetic characteristic for these phenomena has been made. The contractile tone and contraction of processes of living isolated neurons are reported. The dependence of the direction of retraction on the localization of the adhesion site of the isolated cell has been detected. The retraction bulb has been identified as an indicator of all contractions of motor and sensory terminals, both alive and fixed. The process of transformation of growth cones into retraction bulbs has been investigated. The presence of mechanical tension in preterminals and interneuronal contacts has been demonstrated in vitro. Similarity of the kinetics of tissue receptor sensory terminals and growth cones has been detected during in vivo experiments. The kinetics of asynaptic dendrite contraction has been compared to the well-characterized structural variability of dendritic spines. The hypothesis of a common origin of the contractile tone of all nervous elements as one of the principal nonelectrophysiological properties of a neuron has been put forward.

[收缩张力和收缩是活神经元末梢的重要生理特性]。
本文试图总结神经过程以及受体和突触末端可逆结构改变的一些静态形态学表现,并将它们与活神经元的实际转化机制进行比较,并找到这些现象的共同动力学特征。报道了活的离体神经元的收缩张力和收缩过程。已经检测到分离细胞粘附位点的定位对回缩方向的依赖。收缩球已被确定为所有运动和感觉终端收缩的指示器,无论是活的还是固定的。研究了生长球果转化为缩回球的过程。机械张力的存在,在前终端和神经元间的接触已经证明了体外。在体内实验中发现了组织受体感觉终端和生长锥的动力学相似性。无突触树突收缩的动力学已经与树突棘的结构变异性进行了比较。提出了所有神经元件的收缩张力作为神经元的主要非电生理特性之一的共同起源的假设。
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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