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[健康受试者的颈段体感诱发电位:参考电极位置对反应各方面影响的分析]

[Cervical somatosensory evoked potentials in the healthy subject: analysis of the effect of the location of the reference electrode on aspects of the responses].

作者信息

Mauguiere F

出版信息

Rev Electroencephalogr Neurophysiol Clin. 1983 Dec;13(3):259-72. doi: 10.1016/s0370-4475(83)80037-9.

Abstract

Cervical SEPs were recorded in 111 normal subjects following stimulation of the median nerve at the wrist, using 3 different sites for the reference electrode (Fz, earlobe, shoulder). It was shown that cephalic reference electrodes (Fz or earlobe) modify the wave form of the cervical response, because they pick up far-field SEPs (P9, P11, P13, P14) originating from cervical roots, spinal cord and brainstem. These far-field SEP components are injected as negativities in the activity recorded by the cervical electrode. The responses recorded with cephalic reference differ from those recorded at the same cervical site, with a non-cephalic reference in 3 main points: (1) the amplitude of negative components N11 and N13 is increased; (2) the onset latency of N11 is significantly shorter; (3) an N14 negativity is added, the origin of which is probably in the brainstem; this component may occupy the peak of the cervical negativity; thus the central conduction time, calculated as the time interval between N14 and N20, does not take into account the time for spinal propagation of the somatosensory afferent inputs. A topographic study of cervical responses in 10 normal subjects showed an increase of the onset latency of N11 (mean 0.89) from the lower cervical region to the cervico-occipital junction, provided that a non-cephalic reference is used. This result suggests that N11 corresponds to the travelling of action potentials in the ascending spinal somatosensory pathways. The use of a medio-frontal (Fz) reference electrode results in: (1) a masking of the latency shift of N11 latency because of the subtraction of the far-field Fz-recorded P11 component, the onset of which was found to be synchronous with the entry of afferent volleys in the lower cervical spinal cord; (2) a modification of the spatial organization of the responses, due to the subtraction of far-field scalp-recorded positivities P9, P11, P13 and P14, that creates negative N9, N11, N13 and N14 potentials far below the level where cervical roots enter the spinal cord.

摘要

对111名正常受试者在腕部刺激正中神经后记录颈段体感诱发电位(Cervical SEPs),参考电极采用3个不同部位(Fz、耳垂、肩部)。结果显示,头部参考电极(Fz或耳垂)会改变颈段反应的波形,因为它们会采集到源自颈神经根、脊髓和脑干的远场体感诱发电位(P9、P11、P13、P14)。这些远场体感诱发电位成分作为负波混入颈电极记录的活动中。使用头部参考电极记录的反应与在同一颈段部位使用非头部参考电极记录的反应在3个主要方面存在差异:(1)负性成分N11和N13的波幅增加;(2)N11的起始潜伏期显著缩短;(3)增加了一个N14负波,其起源可能在脑干;该成分可能占据颈段负波的峰值;因此,计算为N14与N20之间时间间隔的中枢传导时间未考虑躯体感觉传入冲动在脊髓中传导的时间。对10名正常受试者颈段反应的地形图研究显示,若使用非头部参考电极,从下颈段区域到颈枕交界处,N11的起始潜伏期(平均0.89)会增加。这一结果表明,N11对应于动作电位在脊髓躯体感觉上行通路中的传导。使用额中(Fz)参考电极会导致:(1)由于减去远场Fz记录的P11成分而掩盖了N11潜伏期的延迟变化,发现P11成分的起始与传入冲动进入下颈段脊髓同步;(2)由于减去远场头皮记录的正性波P9、P11、P13和P14而改变了反应的空间组织,这会在颈神经根进入脊髓水平以下产生负性N9、N11、N13和N14电位。

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