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从大鼠视上核和室旁核神经元记录到的复合动作电位波形:不同膜位点存在钠峰和钙峰成分的证据。

Complex action potential waveform recorded from supraoptic and paraventricular neurones of the rat: evidence for sodium and calcium spike components at different membrane sites.

作者信息

Mason W T, Leng G

出版信息

Exp Brain Res. 1984;56(1):135-43. doi: 10.1007/BF00237449.

Abstract

Magnocellular neurones of the supraoptic and paraventricular nuclei display a complex waveform when recorded extracellularly. The present work has examined the possible reasons for the complexity of this waveform by making extracellular recordings from antidromically identified neurones in the anaesthetized rat and extra- and intracellular recordings from similar neurones in the hypothalamic slice preparation, where external solutions can be changed. In extracellularly recorded units, action potentials had two positive going components. The first of these was abolished by tetrodotoxin. The second, slower component was abolished when external Ca++ concentration was lowered, but enhanced in magnitude and duration when Ba++ was placed in the external medium. The second component was sensitive to electrode movement and was not observed to the same degree when intracellular recordings were made. In light of these observations and the known morphology of these neurones, it is suggested that the magnocellular neurone action potential is comprised of a fast Na+-dependent component and a slower component dependent on Ca++ entry which may originate from a part of the cell other than the soma. The most likely site for this Ca++ component to occur is at the cell dendrite.

摘要

视上核和室旁核的大细胞神经元在细胞外记录时呈现出复杂的波形。本研究通过对麻醉大鼠中经逆向刺激鉴定的神经元进行细胞外记录,以及对下丘脑脑片制备中类似神经元进行细胞外和细胞内记录(在此可改变外部溶液),研究了该波形复杂性的可能原因。在细胞外记录的单位中,动作电位有两个正向成分。其中第一个成分被河豚毒素消除。第二个较慢的成分在降低外部Ca++浓度时被消除,但当外部介质中加入Ba++时,其幅度和持续时间会增加。第二个成分对电极移动敏感,在进行细胞内记录时未观察到相同程度的该成分。根据这些观察结果以及这些神经元已知的形态,提示大细胞神经元动作电位由一个快速的Na+依赖性成分和一个较慢的依赖Ca++内流的成分组成,后者可能起源于细胞体以外的部分。Ca++成分最可能出现的部位是细胞树突。

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