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幼鼠感觉运动连接中结构参数与释放参数之间的关系。

Relation between structural and release parameters at the young rat sensorimotor connection.

作者信息

Karamian O A, Kozhanov V M, Chmykhova N M

机构信息

Laboratory of the Evolution of Neuronal Interrelation, Sechenov Institute, Academy of Sciences of the U.S.S.R., Leningrad.

出版信息

Neuroscience. 1991;43(2-3):577-84. doi: 10.1016/0306-4522(91)90316-g.

Abstract

The present work was carried out on isolated spinal cords of young rats. The aim of this study was the combined morphological and electrophysiological investigation of sensorimotor connections labelled with horseradish peroxidase and the evaluation of the relationship between their structural and functional properties. Sensorimotor contacts were widely distributed along the postsynaptic cell: from the soma and juxtasomatic dendrites to distal dendrites. The number of contacting boutons in the connection of a single afferent fibre and an individual motoneuron was about 10. The amplitude fluctuation patterns of the unitary and the minimal excitatory postsynaptic potentials of the motoneurons fitted with predictions based on a binomial model. A close correspondence was found between the estimated number of binomial release sites, n, and the number of contacting boutons. The calculated size of the quantal potential was about 100 microV. The difference in the organization of sensorimotor connections of the young rat and the frog is discussed.

摘要

本研究在幼鼠离体脊髓上进行。本研究的目的是对用辣根过氧化物酶标记的感觉运动连接进行形态学和电生理学联合研究,并评估其结构和功能特性之间的关系。感觉运动接触广泛分布于突触后细胞:从胞体和近胞体树突到远端树突。单根传入纤维与单个运动神经元连接中接触终扣的数量约为10个。运动神经元的单突触和最小兴奋性突触后电位的幅度波动模式符合基于二项式模型的预测。发现二项式释放位点的估计数量n与接触终扣的数量之间存在密切对应关系。计算出的量子电位大小约为100微伏。讨论了幼鼠和青蛙感觉运动连接组织的差异。

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