Becker D E, Yingling C D, Fein G
University of California, San Francisco.
Electroencephalogr Clin Neurophysiol. 1993 Jul-Aug;88(4):290-301. doi: 10.1016/0168-5597(93)90053-r.
This study examined the relationships among 3 components of the somatosensory evoked potential (SEP) to painful stimuli. Painful stimuli were produced using intracutaneous electrical stimulation of a fingertip and two levels of non-painful stimuli were produced by superficial electrical stimulation of a neighboring fingertip. SEPs were recorded from Cz-A1 and Pz-A1, and difference waves were computed for 3 components: (1) a pain component (the difference between SEPs to painful vs. strong but non-painful stimuli); (2) an intensity component that is not related to pain (the difference between SEPs to strong non-painful vs. mild non-painful stimuli); and (3) a P300 component (the difference between SEPs to the same stimuli under Target instructions vs. Standard instructions). The positive peaks in the 3 types of difference waves differed in both latency and topography, although with latency and topography overlap. The intensity component had an earlier positive peak than the pain component, and the pain component had an earlier positive peak than the P300 component. The pain and intensity components were larger at Cz than Pz, whereas the P300 component was larger at Pz than Cz. Under certain conditions, the pain evoked SEP consists of a weighted combination of the 3 components, complicating interpretation of the positive peaks in the recorded wave forms.
本研究考察了体感诱发电位(SEP)对疼痛刺激的3个成分之间的关系。通过对指尖进行皮内电刺激产生疼痛刺激,通过对相邻指尖进行表面电刺激产生两种非疼痛刺激水平。从Cz - A1和Pz - A1记录SEP,并计算3个成分的差异波:(1)疼痛成分(对疼痛刺激与强烈但非疼痛刺激的SEP之间的差异);(2)与疼痛无关的强度成分(对强烈非疼痛刺激与轻度非疼痛刺激的SEP之间的差异);(3)P300成分(在目标指令与标准指令下对相同刺激的SEP之间的差异)。3种差异波中的正峰在潜伏期和地形图上均有差异,尽管存在潜伏期和地形图重叠。强度成分的正峰比疼痛成分更早出现,疼痛成分的正峰比P300成分更早出现。疼痛和强度成分在Cz处比在Pz处更大,而P300成分在Pz处比在Cz处更大。在某些条件下,疼痛诱发的SEP由这3个成分的加权组合组成,这使得对记录波形中正峰的解释变得复杂。