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通过皮层脑电图对人类手部和唇部感觉运动皮层的研究。

Human hand and lip sensorimotor cortex as studied on electrocorticography.

作者信息

Baumgartner C, Barth D S, Levesque M F, Sutherling W W

机构信息

Department of Neurology, University of California, Los Angeles 90024.

出版信息

Electroencephalogr Clin Neurophysiol. 1992 Mar-Apr;84(2):115-26. doi: 10.1016/0168-5597(92)90016-5.

Abstract

We investigated functional topography of human hand and lip sensorimotor cortex using somatosensory evoked potentials (SEPs) from chronically indwelling subdural grid electrodes (ECoG) in 3 epilepsy patients during stimulation of median nerve, ulnar nerve, and lower lip. We used dipole modeling to determine the cortical location of each peripheral sensory field. The cortical locations were in the postcentral gyrus and showed a clear somatotopic organization from medial superior to lateral inferior in the order: ulnar nerve, median nerve, and lip. The source localizations agreed with the results of cortical stimulations and anatomical features on intraoperative photographs. The cortical regions of median and ulnar nerve each could be modeled by sequential tangential and radial dipoles. The cortical region of lip was different and could be explained mostly by tangential dipoles. These findings suggest a difference in the cortical organization of human lip and hand sensory cortex and are consistent with a larger representation of lip in the posterior bank of central fissure in area 3b than on the gyral surface in area 1, similar to findings in macaque. Further studies in a larger population of patients with ECoG or normal subjects with scalp-EEG and MEG are warranted to test this hypothesis.

摘要

我们利用慢性植入硬膜下栅格电极(ECoG)记录的体感诱发电位(SEP),对3例癫痫患者在刺激正中神经、尺神经和下唇时的手部和唇部感觉运动皮层的功能地形图进行了研究。我们使用偶极子模型来确定每个外周感觉区域在皮层的位置。这些皮层位置位于中央后回,并且从内侧上方到外侧下方呈现出清晰的躯体定位组织,顺序为:尺神经、正中神经和唇部。源定位结果与皮层刺激结果以及术中照片上的解剖特征相符。正中神经和尺神经的皮层区域均可通过连续的切向和径向偶极子进行建模。唇部的皮层区域则不同,主要可由切向偶极子来解释。这些发现表明人类唇部和手部感觉皮层的皮层组织存在差异,并且与猕猴的研究结果相似,即中央沟后岸3b区唇部的表征比1区脑回表面的表征更大。有必要对更多使用ECoG的患者群体或使用头皮脑电图和脑磁图的正常受试者进行进一步研究,以验证这一假设。

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