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通过皮层电刺激定义的人类额叶眼区的位置:解剖学、功能和电生理学特征

Location of the human frontal eye field as defined by electrical cortical stimulation: anatomical, functional and electrophysiological characteristics.

作者信息

Blanke O, Spinelli L, Thut G, Michel C M, Perrig S, Landis T, Seeck M

机构信息

Laboratory of Presurgical Epilepsy Evaluation, and Human Brain Mapping Laboratory, University Hospital, Geneva, Switzerland.

出版信息

Neuroreport. 2000 Jun 26;11(9):1907-13. doi: 10.1097/00001756-200006260-00021.

Abstract

Electrical cortical stimulation of the human frontal gyri and the precentral gyrus has been shown to induce eye movements and it has classically been assumed that these stimulation-induced eye movements result from electrical interference with the human homologue of the monkey frontal eye field (FEF). However, amplitude of electrical current and induced type of eye movement, which are essential for the determination of eye fields in the monkey, have not been investigated systematically in man. We applied electrical cortical stimulation in the lateral frontal cortex in six epileptic patients. Sites whose stimulation resulted in eye movements were determined with respect to gyral and sulcal patterns, Talairach coordinates and neighboring functions as found by electrical cortical stimulation. Based on this approach, a restricted location of the electrically defined FEF is proposed within a larger oculomotor region on the posterior part of the middle frontal gyrus.

摘要

对人类额回和中央前回进行皮层电刺激已被证明可诱发眼球运动,传统上人们认为这些刺激诱发的眼球运动是由于电干扰了猴子额叶眼区(FEF)在人类中的同源物。然而,对于确定猴子眼区至关重要的电流幅度和诱发的眼球运动类型,尚未在人类中进行系统研究。我们对6名癫痫患者的外侧额叶皮层进行了皮层电刺激。根据皮层电刺激所发现的脑回和脑沟模式、Talairach坐标以及相邻功能,确定了刺激后导致眼球运动的部位。基于这种方法,在额中回后部较大的动眼神经区域内,提出了电定义的FEF的一个受限位置。

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