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Central scalp projection of the N30 SEP source activity after median nerve stimulation.

机译:正中神经刺激后N30 SEP来源活动的中央头皮投影。

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摘要

Conflicting results have been reported about abnormalities of the N30 somatosensory evoked potential (SEP) in movement disorders. In these studies, the N30 amplitude was measured in the frontal scalp region. Our aim was to identify the scalp electrodes recording the genuine activity of the N30 generator. In 18 subjects, we recorded the scalp SEPs from 19 electrodes and found a negative potential around 30 ms reaching its maximal amplitude in the frontal region. However, neither simple visual inspection of the frontal traces nor topographic analysis could distinguish the N24 from the N30 component of the frontal negativity. Brain electrical source analysis of SEPs showed that a four dipolar source model could well explain the scalp SEP distribution. We calculated the scalp field distributions of the source activities as modeled from the scalp recordings and observed that the maximal field distribution reflecting the activity of the N30 source was in the central region, whereas that reflecting the N24 source activity was frontal. We conclude that the negative response recorded around 30 ms in the central traces represents "genuine" N30 source activity, whereas the frontal negativity, which is higher in amplitude, is a mixture of the activities of both the N30 and N24 sources. Copyright 2000 John Wiley & Sons, Inc.
机译:关于运动障碍中N30体感诱发电位(SEP)异常的报道有矛盾的结果。在这些研究中,在额头皮区域测量了N30振幅。我们的目的是确定记录N30发生器真实活动的头皮电极。在18位受试者中,我们记录了来自19个电极的头皮SEP,并发现30毫秒左右的负电位在额叶区域达到最大振幅。但是,无论是正面痕迹的简单视觉检查还是地形分析都无法将N24与额叶负性的N30成分区分开。 SEPs的脑电源分析表明,四个偶极子源模型可以很好地解释头皮SEP分布。我们根据头皮记录建模计算了源活动的头皮场分布,并观察到反映N30源活动的最大场分布在中部地区,而反映N24源活动的最大场分布在前部。我们得出的结论是,在中央迹线中大约30 ms处记录的负响应表示“真正的” N30源活动,而正面负值(振幅较高)是N30和N24源两者活动的混合。版权所有2000 John Wiley&Sons,Inc.

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