Peterson N N, Schroeder C E, Arezzo J C
Department of Neuroscience, Albert Einstein College of Medicine, Rose Fitzgerald Kennedy Center, Bronx, NY 10461, USA.
Electroencephalogr Clin Neurophysiol. 1995 May;96(3):248-60. doi: 10.1016/0168-5597(95)00006-e.
Controversy continues to exist regarding the generators of the initial cortical components of the somatosensory evoked potential (SEP). This issue was explored by detailed epidural and intracortical mapping of somatosensory evoked activity in Old World monkeys. In depth recordings, 3 complementary procedures were utilized: (1) the intracortical and subcortical distribution of SEPs was determined from approximately 4000 locations; (2) concomitant profiles of multiple unit activity (MUA) were recorded as an estimate of local action potential profiles; (3) 1-dimensional calculations of current source density (CSD) were used to outline the timing and pattern of regional transmembrane current flow. Our analysis confirms the participation of multiple cortical areas, located on either side of the central sulcus, in the generation of the initial cortical SEP components. Earliest activity P10, was localized to area 3, followed within milliseconds by activation of areas 1, 2 (P12), and 4 (P13). In SI (Brodmann's areas 3, 1 and 2), the initial SEP components reflect the depolarization of lamina 4 stellate cells and the subsequent activation of adjacent pyramidal cells in laminae 3 and 5. The genesis of later cortical components (P20, N45) represents the composite of activity distributed across multiple cortical laminae and the interaction of overlapping excitatory and inhibitory events. These findings have direct implications for the clinical interpretation of SEP waveforms.
关于体感诱发电位(SEP)初始皮层成分的产生机制,争议仍然存在。通过对旧世界猴体感诱发电活动进行详细的硬膜外和皮层内图谱分析,对这一问题进行了探究。在深度记录中,采用了3种互补的方法:(1)从大约4000个位置确定SEP的皮层内和皮层下分布;(2)记录多单位活动(MUA)的伴随情况,作为局部动作电位情况的估计;(3)使用电流源密度(CSD)的一维计算来勾勒区域跨膜电流流动的时间和模式。我们的分析证实,位于中央沟两侧的多个皮层区域参与了初始皮层SEP成分的产生。最早的活动P10定位于3区,随后在几毫秒内1区、2区(P12)和4区(P13)被激活。在初级体感皮层(布罗德曼3区、1区和2区),初始SEP成分反映了第4层星状细胞的去极化以及随后第3层和第5层相邻锥体细胞的激活。后期皮层成分(P20、N45)的产生代表了分布在多个皮层层的活动的综合以及重叠的兴奋性和抑制性事件的相互作用。这些发现对SEP波形的临床解释具有直接意义。