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三叉神经痛:三叉神经节中自持放电的作用

Trigeminal neuralgia: the role of self-sustaining discharge in the trigeminal ganglion.

作者信息

Rappaport Harry Z, Devor Marshall

机构信息

Department of Neurosurgery, Beilinson Hospital, Tel Aviv University Medical School, Petah Tikva 49100 Israel Department of Cell and Animal Biology, Life Sciences Institute, Hebrew University of Jerusalem, Jerusalem 91904 Israel.

出版信息

Pain. 1994 Feb;56(2):127-138. doi: 10.1016/0304-3959(94)90086-8.

Abstract

Idiosyncrasies of trigeminal neuralgia provide both clues and constraints on candidate hypotheses concerning the underlying neural mechanism. After reviewing the key clinical aspects of the disease, we propose here a novel hypothesis based on recent findings from experimental nerve-injury preparations. The hypothesis states that trigger stimuli set off bursts of activity in a small cluster of trigeminal ganglion (TRG) neurons that have been rendered hyperexcitable as a result of TRG or trigeminal root damage. Activity then spreads from this "TRG ignition focus" to encompass more widespread portions of the ganglion. After a brief period of autonomous firing (seconds to minutes), activity is quenched and a refractory period is initiated by an intrinsic suppressive (hyperpolarizing) process engaged as a result of the rapid firing. The primary abnormality resides in the TRG and trigeminal root, rather than in the skin or the CNS. Because of this, sensation is essentially normal between periods of ectopic paroxysmal TRG discharge.

摘要

三叉神经痛的特质为有关潜在神经机制的候选假说提供了线索和限制。在回顾了该疾病的关键临床方面后,我们在此基于实验性神经损伤制备的最新发现提出了一种新假说。该假说指出,触发刺激会引发一小群三叉神经节(TRG)神经元的活动爆发,这些神经元由于TRG或三叉神经根损伤而变得过度兴奋。然后活动从这个“TRG点火焦点”扩散,涵盖神经节更广泛的部分。经过短暂的自主放电(数秒至数分钟)后,活动被抑制,由于快速放电而启动的内在抑制(超极化)过程会引发不应期。主要异常存在于TRG和三叉神经根中,而非皮肤或中枢神经系统中。因此,在异位阵发性TRG放电的间隙,感觉基本正常。

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