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齿状回颗粒神经元的突触刺激后会出现钾电导的延迟增加。

A late increase in potassium conductance follows synaptic stimulation of granule neurons of the dentate gyrus.

作者信息

Thalmann R H, Ayala G F

出版信息

Neurosci Lett. 1982 Apr 26;29(3):243-8. doi: 10.1016/0304-3940(82)90324-x.

Abstract

In response to orthodromic stimulation, granule neurons of the dentate gyrus of the rat hippocampal slice display a late hyperpolarization (LH) with properties which clearly distinguish it from the conventional gamma-aminobutyric ac id (GABA)-mediated chloride (Cl) dependent inhibitory postsynaptic potential (IPSP). The LH is not reduced by antagonists of GABA-mediated Cl conductances such as picrotoxin, and it is probably dependent on increased potassium conductance rather than in increased Cl conductance. The LH can be elicited by orthodromic stimulation which does not elicit a burst of action potentials and, in fact, the LH has been observed following stimulation which did not produce a depolarization detectable at the resting membrane potential. It is suggested that the increased potassium conductance of the LH may be calcium-dependent, or it may be directly elicited by a neurotransmitter.

摘要

对顺向刺激的反应中,大鼠海马切片齿状回的颗粒神经元呈现出一种晚期超极化(LH),其特性明显区别于传统的γ-氨基丁酸(GABA)介导的氯离子(Cl)依赖性抑制性突触后电位(IPSP)。LH不会被GABA介导的Cl电导拮抗剂(如印防己毒素)所减弱,它可能依赖于钾电导的增加而非Cl电导的增加。LH可由不会引发动作电位爆发的顺向刺激诱发,实际上,在未产生静息膜电位可检测到的去极化的刺激后也观察到了LH。有人提出,LH增加的钾电导可能依赖于钙,或者可能由神经递质直接诱发。

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