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[大鼠脑片红核神经元的电生理特性]

[Electrophysiologic properties of red nucleus neurons in the rat brain slices].

作者信息

Babalian A L, Fanardzhian V V

出版信息

Neirofiziologiia. 1991;23(5):607-16.

PMID:1787871
Abstract

Intracellular recordings from the red nucleus (RN) neurons were made in experiments on the rat brain slices. Passive membrane properties (input resistance and membrane time constant) of the RN neurons were evaluated. Phenomena of potential-dependent rebound depolarization and time-dependent inward rectification were revealed by means of passing hyperpolarizing current pulses through the recorded cells. Injections of depolarizing currents caused repetitive firing of neurons with frequencies directly depending on the intensity of injected currents. Repetitive firing was also characterized by a fast frequency adaptation during injections of currents of different intensities. Stimulation of a region of slices presumably corresponding to the decussation of brachium conjunctivum evoked mainly monosynaptic EPSPs with a "fast"-rise time in the RN neurons, which suggests activation of the synaptic input from the cerebellar nucleus interpositus. Stimulation of the same region sometimes evoked EPSP-IPSP mixtures or pure IPSPs in the RN neurons.

摘要

在大鼠脑片实验中对红核(RN)神经元进行了细胞内记录。评估了RN神经元的被动膜特性(输入电阻和膜时间常数)。通过向记录的细胞施加超极化电流脉冲,揭示了电位依赖性反弹去极化和时间依赖性内向整流现象。注入去极化电流会导致神经元重复放电,其频率直接取决于注入电流的强度。重复放电的特征还在于在注入不同强度电流期间的快速频率适应。刺激切片中大概对应于结合臂交叉的区域,在RN神经元中主要诱发具有“快速”上升时间的单突触兴奋性突触后电位(EPSP),这表明来自中间小脑核的突触输入被激活。刺激同一区域有时会在RN神经元中诱发EPSP-IPSP混合或纯抑制性突触后电位(IPSP)。

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