Bedingham W, Tatton W G
Can J Neurol Sci. 1984 May;11(2):272-80. doi: 10.1017/s0317167100045534.
The relationship between the segmented EMG activity in flexor carpi radialis evoked by imposed angular wrist displacement was studied with respect to the level of pre-existing background activity in 30 normal human subjects. Input-output response planes demonstrate that the magnitude of the M1 & M2-3 segments is dependent on both the displacement parameters and the level of pre-existing EMG activity in the stretched muscle. If the level of background activity exceeded 4-5% of the maximum voluntary contraction, the onset latency of the M1 segment and duration of the M1 and the M2-3 segments remained constant (within +/- 2 msec) for different magnitudes of step load displacements, despite marked variation in the range of the displacement's amplitude, duration, velocity, and acceleration. We propose that the dependency of the relationship between reflex magnitude and imposed movement parameters on tonic motoneuron activity, as represented by pre-existing EMG levels, may reflect an automatic adjustment mechanism that could be utilized in servo compensation of movements requiring markedly different force levels.
在30名正常人体受试者中,研究了因施加的腕关节角位移而诱发的桡侧腕屈肌中分段肌电图活动与预先存在的背景活动水平之间的关系。输入-输出响应平面表明,M1和M2-3节段的大小取决于位移参数和被拉伸肌肉中预先存在的肌电图活动水平。如果背景活动水平超过最大自主收缩的4-5%,则对于不同大小的阶跃负荷位移,M1节段的起始潜伏期以及M1和M2-3节段的持续时间保持恒定(在±2毫秒内),尽管位移的幅度、持续时间、速度和加速度范围存在明显变化。我们提出,以预先存在的肌电图水平表示的反射幅度与施加的运动参数之间关系对紧张性运动神经元活动的依赖性,可能反映了一种自动调节机制,该机制可用于对需要明显不同力水平的运动进行伺服补偿。