Altenmüller E, Berger W, Prokop T, Trippel M, Dietz V
Department of Neurology, Univ. of Tübingen, Germany.
Electroencephalogr Clin Neurophysiol. 1995 Nov;96(6):516-25. doi: 10.1016/0013-4694(95)00093-e.
In order to investigate the modulation of somatosensory processing during stance and locomotion, sural nerve somatosensory evoked potentials were recorded during both stance and different phases of the step-cycle. Characteristic sequences of negative-positive waves were elicited, consisting of an early component, N40, presumably of subcortical origin, followed by a P50-N80-P220 complex of cortical origin. The N40 and N40-P50 components had similar amplitudes in both gait and stance. However, the P50-N80 component was attenuated whereas the N80-P220 complex became biphasic during gait. Within the step-cycle, amplitudes of the cortical components P50-N80 and N80-P110 were larger prior to footfall and smaller at the beginning of the support phase. The results demonstrate that locomotion produces a modulatory effect on somatosensory input at a cortical level. Within the step-cycle, excitability of the somatosensory cortex is increased during the middle and late swing phases and decreased during the support phase. Such modulation may contribute to an improved detection of foot contact at touchdown.
为了研究站立和行走过程中体感加工的调制情况,在站立和步周期的不同阶段记录了腓肠神经体感诱发电位。引出了正负波的特征序列,包括一个早期成分N40,推测起源于皮层下,随后是一个起源于皮层的P50-N80-P220复合体。N40和N40-P50成分在步态和站立时具有相似的振幅。然而,P50-N80成分在步态期间减弱,而N80-P220复合体在步态期间变为双相。在步周期内,皮层成分P50-N80和N80-P110的振幅在落地前较大,在支撑期开始时较小。结果表明,行走在皮层水平对体感输入产生调制作用。在步周期内,体感皮层的兴奋性在摆动中期和后期增加,在支撑期降低。这种调制可能有助于在着地时更好地检测足部接触。