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脑细胞对信息的电紧张性处理。

Electrotonic processing of information by brain cells.

作者信息

Schmitt R O, Dev P, Smith B H

出版信息

Science. 1976 Jul 9;193(4248):114-20. doi: 10.1126/science.180598.

Abstract

In contrast to well-studied through-protection neurons that propagate information from one region to another in the central nervous system, short-axon or axonless neurons form local circuits, transmitting signals through synapses and electrical junctions between their dendrites. Interaction in this dendritic network proceeds without spike action potentials. Interaction is mediated by graded electrotonic changes of potential and is transmitted through high sensitivity (submillivolt threshold) synapses rather than by lower sensitivity (20 to 100-mv threshold) synapses typical of projection neurons. A crucial feature of local circuits is their high degree of interaction both through specialized junctional structures and through the extracellular fields generated by local and more distant brain regions. The anatomical evidence for the nature and distribution of neuronal local circuits in the nervous system is surveyed. Bioelectric mechanisms are discussed in relation to the special properties of local circuits, including dendrodendritic synapses, synaptic sensitivity, electrotonic coupling, and field effects. Intraneuronal and interneuronal transport of various types of substances suggests that the biochemical and the bioelectrical parameters are functionally interwoven. Through such interactions neuronal local circuits, with their distinctive properties, may play an essential role in higher brain function.

摘要

与在中枢神经系统中从一个区域向另一个区域传播信息的、已被充分研究的穿通保护神经元不同,短轴突或无轴突神经元形成局部回路,通过其树突之间的突触和电连接来传递信号。在这个树突网络中的相互作用在没有峰动作电位的情况下进行。相互作用由电位的分级电紧张变化介导,并通过高灵敏度(亚毫伏阈值)突触而不是投射神经元典型的低灵敏度(20至100毫伏阈值)突触进行传递。局部回路的一个关键特征是它们通过专门的连接结构以及由局部和更远的脑区产生的细胞外场进行高度相互作用。本文综述了神经系统中神经元局部回路的性质和分布的解剖学证据。讨论了与局部回路的特殊性质相关的生物电机制,包括树突-树突突触、突触敏感性、电紧张耦合和场效应。各种类型物质的神经元内和神经元间运输表明,生化参数和生物电参数在功能上相互交织。通过这种相互作用,具有独特性质的神经元局部回路可能在高级脑功能中发挥重要作用。

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