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海马复合锋电位细胞和θ细胞的电生理特征

Electrophysiological characteristics of hippocampal complex-spike cells and theta cells.

作者信息

Fox S E, Ranck J B

出版信息

Exp Brain Res. 1981;41(3-4):399-410. doi: 10.1007/BF00238898.

Abstract

Stimulating electrodes were chronically implanted in the ventral hippocampal commissure and the entorhinal cortex or angular bundle of rats. Moveable metal microelectrodes which could be passed through the hippocampus were implanted. All hippocampal units were classified s complex-spike cells or theta cells on the basis of the form of their action potentials and their rates of firing in various behaviors. Field potentials and unit firing evoked from the stimulating electrodes were recorded during slow wave sleep. Complex-spike cells (1) could often be antidromically activated in CA3 (it was not attempted in CA1); (2) could only be induced to fire one or two action potentials in response to a single stimulus; (3) had action potentials at the same time as the local population-spike and, in condition-test studies, were depressed when the population-spike was depressed. (The population-spike is presumably the summed synchronous action potentials of pyramidal cells.) Theta cells: (1) were antidromically activated in only one out of 25 cases; (2) usually could fire long bursts of action potentials in response to a sufficiently intense single stimulus; (3) this firing occurred before, during, and after the local orthodromic population-spike. Most complex-spike cells in Ammon's horn must be pyramidal cells (projection cells), and vice versa. The case for theta cells is more difficult. Some are non-pyramidal cells with locally ramifying axons, but at least some are projection cells. The data is consistent with most of them being inhibitory interneurons, but this is not established.

摘要

刺激电极被长期植入大鼠的腹侧海马连合、内嗅皮质或角束中。还植入了可穿过海马体的可移动金属微电极。根据海马体中所有神经元动作电位的形式及其在各种行为中的放电频率,将它们分为复合棘波细胞或θ细胞。在慢波睡眠期间记录刺激电极诱发的场电位和神经元放电情况。复合棘波细胞:(1)在CA3区常常能被逆向激活(未在CA1区尝试);(2)对单个刺激仅能诱发一两个动作电位;(3)其动作电位与局部群体峰电位同时出现,并且在条件-测试研究中,当群体峰电位受到抑制时,复合棘波细胞也会受到抑制。(群体峰电位大概是锥体细胞同步动作电位的总和。)θ细胞:(1)在25例中仅有1例能被逆向激活;(2)通常能对足够强的单个刺激发放长时间的动作电位串;(3)这种放电在局部顺向群体峰电位之前、期间和之后出现。海马角中的大多数复合棘波细胞必定是锥体细胞(投射细胞),反之亦然。对于θ细胞的情况则更难确定。有些是具有局部分支轴突的非锥体细胞,但至少有些是投射细胞。数据表明它们中的大多数可能是抑制性中间神经元,但这一点尚未得到证实。

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