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[一例皮质反射性正-负性肌阵挛——电生理研究]

[A case of cortical reflex positive-negative myoclonus--electrophysiological study].

作者信息

Okada K, Mishima Y, Matsunaga K, Uozumi T, Tsuji S, Murai Y

机构信息

Department of Neurology, University of Occupational and Environmental Health.

出版信息

Rinsho Shinkeigaku. 1997 Nov;37(11):992-5.

PMID:9503969
Abstract

An 11-year-old girl who had the positive-negative myoclonus and the history of the generalized tonic clonic seizure was electrophysiologically studied. She had no siblings with either myoclonus or epilepsy, and her intellectual level was normal. She had no other neurological deficits including ataxia, pyramidal and extrapyramidal signs. Surface EMG showed a brief increase in the EMG activity followed by the silent period associated with positive and negative myoclonus during sustained wrist extension. Giant SEP and C reflex (38.6 ms) following electric stimulation of the median nerve at the wrist were obtained in the resting condition and the silent period (about 180 ms) following C reflex was obtained during voluntary contraction. Jerk-locked back averaging of the EEG time-locked to the onset of the myoclonic discharge recorded from the right biceps muscle showed a cortical spike at the left central region preceding the myoclonus onset by 12.6 ms. The latency of C reflex in this case was very short compared with that of previously reported cortical reflex myoclonus. The estimated cortical delay between the arrival of the somatosensory volley and the motor cortex discharge responsible for the C reflex was -1.0 ms and this value was shorter than that in patients with typical cortical reflex myoclonus (mean 3.7 +/- 1.1 ms). Conditioning stimuli (C) of the right median nerve at the wrist started to facilitate the amplitude of the motor evoked potential recorded from the right abductor pollicis brevis muscle after magnetic test stimuli (T) of the left motor cortex at 20 ms of the C-T interval. This C-T interval was shorter than that (24.6 +/- 1.6 ms) in patients with the typical cortical myoclonus. These electrophysiological findings suggested the shorter reflex pathway of the cortical reflex myoclonus in this case than in typical cortical reflex myoclonus. We speculated that the myoclonus was based upon the direct sensory projection from the thalamus to the motor cortex in this case.

摘要

对一名患有正负性肌阵挛且有全身强直阵挛发作病史的11岁女孩进行了电生理研究。她没有患肌阵挛或癫痫的兄弟姐妹,智力水平正常。她没有其他神经功能缺损,包括共济失调、锥体束和锥体外系体征。表面肌电图显示,在持续腕部伸展过程中,肌电图活动短暂增加,随后出现与正负性肌阵挛相关的静息期。在静息状态下,对腕部正中神经进行电刺激可获得巨大体感诱发电位(SEP)和C反射(38.6毫秒),在自主收缩期间可获得C反射后的静息期(约180毫秒)。对从右侧肱二头肌记录的肌阵挛放电发作进行脑电图时间锁定的抽动锁定反向平均显示,在肌阵挛发作前12.6毫秒,左侧中央区出现皮质棘波。与先前报道的皮质反射性肌阵挛相比,该病例的C反射潜伏期非常短。体感冲动到达与C反射相关的运动皮层放电之间的估计皮质延迟为-1.0毫秒,该值短于典型皮质反射性肌阵挛患者的值(平均3.7±1.1毫秒)。在C-T间隔为20毫秒时,对左侧运动皮层进行磁刺激(T)后,对腕部右侧正中神经进行条件刺激(C)开始促进从右侧拇短展肌记录的运动诱发电位的幅度。该C-T间隔短于典型皮质肌阵挛患者的间隔(24.6±1.6毫秒)。这些电生理结果表明,该病例中皮质反射性肌阵挛的反射通路比典型皮质反射性肌阵挛的反射通路短。我们推测,在这种情况下,肌阵挛是基于从丘脑到运动皮层的直接感觉投射。

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