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[猫大脑皮质感觉运动区皮质锥体细胞的树突动作电位]

[Dendritic action potentials of pyramidal neurons of the sensomotor cortex of the cerebral cortex of the cat].

作者信息

Labakhua T Sh, Kokaia M G, Okudzhava V M

出版信息

Neirofiziologiia. 1986;18(4):435-43.

PMID:3020451
Abstract

The intracellular activity of pyramidal tract neurons during electrical stimulation of ventro-lateral and ventro-postero-lateral nuclei of thalamus was studied in acute experiments on cats immobilized by myorelaxants. Both somatic and presumably dendritic spikes (d-spikes) were observed. The latter were characterized by relatively low and variable (5-60 mV) amplitude; d-spikes occurred both spontaneously and in response to single shock and tetanic (8-14/s) stimulation of the thalamus. They were also induced by intracellular depolarizing current pulses and thalamic stimulation following iontophoretic application of strychnine. Simultaneously generated somatic and d-spikes revealed no collision between each other. Intracellular hyperpolarizing current pulses abolished only somatic spikes, while d-spikes were not affected. Dendritic origin with multiple generation zones of these variable spikes is suggested. Possible functional role of d-spike is discussed.

摘要

在对用肌松剂麻痹的猫进行的急性实验中,研究了电刺激丘脑腹外侧核和腹后外侧核时锥体束神经元的细胞内活动。观察到了躯体动作电位和推测的树突动作电位(d-动作电位)。后者的特征是幅度相对较低且变化较大(5-60毫伏);d-动作电位既自发出现,也可由对丘脑的单次电击和强直(8-14次/秒)刺激诱发。它们也可由细胞内去极化电流脉冲以及在离子电泳应用士的宁后进行丘脑刺激所诱发。同时产生的躯体动作电位和d-动作电位之间未发现相互碰撞。细胞内超极化电流脉冲仅消除躯体动作电位,而d-动作电位不受影响。提示这些可变动作电位具有树突起源且有多个产生区域。讨论了d-动作电位可能的功能作用。

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