Yamada T, Matsubara M, Shiraishi G, Yeh M, Kawasaki M
Division of Clinical Electrophysiology, Department of Neurology, University of Iowa, College of Medicine, Iowa City, 52242, USA.
Electroencephalogr Clin Neurophysiol. 1996 Jan;100(1):33-43. doi: 10.1016/0168-5597(95)00161-1.
Using topographic maps, we studied the scalp field distribution of somatosensory evoked potentials (SEPs) in response to the stimulation of the tibial (TN), sural (SN) and lateral femoral cutaneous (LFCN) nerves in 24 normal volunteers. Cortical peaks, i.e., N35, P40, N50 and P60 were generally dominant in the contralateral hemisphere for the LFCN-SEP, whereas all peaks except N35 had dominance in the ipsilateral hemisphere to TN- and SN-SEPs. The findings imply that ipsilateral or contralateral peak dominance for the lower extremity SEP is determined by where the cortical leg representation occurs. As a result, mesial hemisphere representation results in peak dominance projected to the hemisphere ipsilateral to stimulation. Representations at the superior lip of the interhemispheric fissure or lateral convexity lead to midline or contralateral peak dominance. These findings also suggest that the paradoxically lateralized P40 is not the result of a positive field dipole shadow generated by the primary negative wave in the mesial hemisphere, but is the primary positive wave, analogous to P26 of the median nerve SEP. Accordingly, contralaterally dominant N35 is likely equivalent to the first cortical potential of N20 in the median nerve SEP. The difference in vector directions of potential fields between N35 and P40 may account for the opposite hemispheric dominance for these peaks in TN- and SN-SEPs.
我们使用地形图研究了24名正常志愿者在接受胫神经(TN)、腓肠神经(SN)和股外侧皮神经(LFCN)刺激时体感诱发电位(SEP)的头皮场分布。对于LFCN-SEP,皮层峰值,即N35、P40、N50和P60通常在对侧半球占主导地位,而对于TN-SEP和SN-SEP,除N35外的所有峰值在同侧半球占主导地位。这些发现表明,下肢SEP的同侧或对侧峰值优势取决于皮层腿部代表区的位置。因此,半球内侧代表区导致峰值优势投射到刺激同侧的半球。半球间裂上唇或外侧凸面的代表区导致中线或对侧峰值优势。这些发现还表明,矛盾的是,P40的侧化并非由半球内侧的初级负波产生的正场偶极子阴影所致,而是初级正波,类似于正中神经SEP的P26。因此,对侧占主导地位的N35可能相当于正中神经SEP中N20的第一个皮层电位。N35和P40之间电位场矢量方向的差异可能解释了TN-SEP和SN-SEP中这些峰值相反的半球优势。