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在体大鼠下丘脑视上核神经元的细胞内记录。

In vivo Intracellular Recording of Neurons in the Supraoptic Nucleus of the Rat Hypothalamus.

机构信息

Mental Retardation Research Center and the Brain Research Institute, UCLA School of Medicine, Center for the Health Sciences, 760 Westwood Plaza, Los Angeles, California 90024, USA.

出版信息

J Neuroendocrinol. 1991 Aug 1;3(4):383-6. doi: 10.1111/j.1365-2826.1991.tb00291.x.

Abstract

Abstract Intracellular recordings were made from cells in the hypothalamic supraoptic nucleus in the urethane-anaesthetized male rat using the ventral surgical approach. Impalements lasted from 5 min to 1 h and recorded cells had an input resistance of 55 to 170 megohms. Spikes of over 50 mV were recorded from 14 cells which could be antidromically activated by stimulation of the neural stalk. The spikes showed a hyperpolarizing afterpotential and the broadening characteristic of rapidly firing magnocellular neurons, which recovered rapidly (<200 ms). When depolarized, the cells showed evidence of a transient potassium current. Recurrent synaptic coupling between the recorded cell and adjacent cells would be expected to alter the hyperpolarizing afterpotential of an antidromic spike as compared with a spontaneous spike; no perceptible difference in the waveforms of the different types of spike could be detected in 11 spontaneously active cells. Application of just subthreshold stimuli to the neural stalk did not evoke depolarizing or hyperpolarizing potentials. Suprathreshold shocks to the neural stalk, when the antidromic spike was prevented by collision, also had no discernible effect on membrane potential. Thus intracellular recordings from magnocellular neurons in vivo revealed electrophysiological properties similar to those seen in vitro. No evidence for synaptic interconnection between magnocellular neurons was found in male rats.

摘要

摘要 在雄性乌拉坦麻醉大鼠中,采用腹侧手术入路,从下丘脑视上核细胞内进行记录。刺穿持续 5 分钟至 1 小时,记录细胞的输入电阻为 55 至 170 兆欧。可以通过刺激神经干逆行激活 14 个细胞,记录到超过 50 mV 的尖峰。这些尖峰表现出超极化后电位和快速发射大细胞神经元的展宽特征,恢复迅速(<200ms)。当去极化时,细胞表现出瞬时钾电流的证据。与自发尖峰相比,记录细胞与相邻细胞之间的复发性突触偶联预计会改变逆行尖峰的超极化后电位;在 11 个自发活动细胞中,无法检测到不同类型尖峰的波形有明显差异。仅向神经干施加亚阈刺激不会引起去极化或超极化电位。当逆行尖峰被碰撞阻止时,对神经干施加超阈刺激也对膜电位没有明显影响。因此,体内大细胞神经元的细胞内记录揭示了与体外相似的电生理特性。在雄性大鼠中未发现大细胞神经元之间存在突触连接的证据。

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