Oda S, Moritani T
Laboratory of Human Motor Control, Faculty of Integrated Human Studies, Kyoto University, Japan.
Eur J Appl Physiol Occup Physiol. 1996;74(1-2):29-35. doi: 10.1007/BF00376491.
A useful method of studying the degree of association between two signals of varying amplitude in the time domain is to use cross-correlation analysis. We applied this to the movement-related cortical potentials digitally filtered so as to eliminate the low frequency component before applying it during maximal unilateral left (UL L), unilateral right (UL R) and bilateral (BL) contractions in 11 right-handed subjects. The recording electrode sites were over the right and left motor cortex areas (C3 and C4). The BL condition revealed higher cross-correlation levels of cortical activities between the two hemispheres than in UL L or UL R contraction [UL L, r = 0.68 (SEM 0.05); UL R, r = 0.73 (SEM 0.03); BL, r = 0.76 (SEM 0.02)]. The UL R revealed a positive phase difference [5 (SEM 2) ms] when the maximal cross-correlation coefficient was shown and UL L showed a negative phase difference [5 (SEM 3) ms]. However, BL revealed a smaller phase difference [2 (SEM 1) ms] than that for UL. It was concluded that during maximal BL contraction cortical cellular activities in both hemispheres was more synchronized in amplitude and time course compared with maximal UL contractions. Our data suggested that central common drive existed between the right and left motor areas during the maximal BL handgrip contractions and the amplitude of potentials of both hemispheres was modified by the interhemispheric inhibition mechanism as reported in other studies.
研究时域中两个幅度不同信号之间关联程度的一种有用方法是使用互相关分析。我们将此方法应用于经过数字滤波以消除低频成分的与运动相关的皮层电位,在11名右利手受试者进行最大程度的单侧左手(UL L)、单侧右手(UL R)和双侧(BL)收缩时进行应用。记录电极位点位于左右运动皮层区域(C3和C4)上方。与UL L或UL R收缩相比,BL条件下两个半球之间皮层活动的互相关水平更高[UL L,r = 0.68(标准误0.05);UL R,r = 0.73(标准误0.03);BL,r = 0.76(标准误0.02)]。当显示最大互相关系数时,UL R显示出正相位差[5(标准误2)毫秒],而UL L显示出负相位差[5(标准误3)毫秒]。然而,BL显示出的相位差[2(标准误1)毫秒]比UL的小。得出的结论是,与最大程度的UL收缩相比,在最大程度的BL收缩期间,两个半球的皮层细胞活动在幅度和时间进程上更加同步。我们的数据表明,在最大程度的BL握力收缩期间,左右运动区域之间存在中枢共同驱动,并且如其他研究所报道的,两个半球电位的幅度受到半球间抑制机制的调节。