Kiyota Takeo, Fujiwara Katsuo
Department of Human Movement and Health, Graduate School of Medical Science, Kanazawa University, Kanazawa, Japan.
Int J Neurosci. 2008 Jul;118(7):935-53. doi: 10.1080/00207450701769372.
This study measured the postural sway and brain potentials evoked by a visual depth stimulus. Thirteen subjects maintained standing posture on a force platform, and were administered two types of depth stimuli, strong and weak. The latency and amplitude of evoked potentials as well as changes in center of foot pressure (CFP) and the electromyogram (EMG) were examined. CFP displacement was found to change according to stimulus intensity. In the occipital lobe, evoked potentials exhibited a triphasic peak, with the first positive peak at approximately 120 ms (P120), the first negative peak at approximately 160 ms (N200), and the second positive peak at approximately 260 ms (P250). Brain evoked potentials correlated with CFP displacement as well as the latency of onset of EMG response. Onset of EMG response was probably related to the P120 component, whereas CFP displacement was related to the P250 component.
本研究测量了视觉深度刺激诱发的姿势摆动和脑电位。13名受试者在测力平台上保持站立姿势,并接受了两种类型的深度刺激,即强刺激和弱刺激。检测了诱发电位的潜伏期和振幅,以及足压力中心(CFP)和肌电图(EMG)的变化。发现CFP位移根据刺激强度而变化。在枕叶,诱发电位呈现出三相峰值,第一个正峰值出现在约120毫秒(P120),第一个负峰值出现在约160毫秒(N200),第二个正峰值出现在约260毫秒(P250)。脑诱发电位与CFP位移以及EMG反应开始的潜伏期相关。EMG反应的开始可能与P120成分有关,而CFP位移与P250成分有关。