Dietz V
Fortschr Med. 1978 Feb 2;96(5):215-9.
From the accordance of the discharge and recruitment behaviour of motor units with the Fourier-analysis of the tremor ripples it is shown that the action tremor originates from any muscle innervation and is equivalent to the mechanical effect of the discharges of all motoneurones of a particular muscle. The power spectrum of tremor is mainly caused by the twitch contractions between recruitment (7--8/sec) and total fusion (25/sec) of the discharging motoneurones. The maximum of the frequency spectrum, which represents the dominant tremor rate, corresponds to the discharge frequency just after recruitment of each motoneurone. The twitch contractions of these newly recruited motor units are mechanically least fused. The power spectrum of the tremor in patients with motor disturbaces parallels the changes in the discharge and recruitment behaviour of motoneurones during voluntary contraction. The correlation between the discharges of two simultaneously recorded motor units shows a tendency to synchronization of all discharge rates the extent of which corresponds to the individual tremor intensity.
通过将运动单位的放电和募集行为与震颤波纹的傅里叶分析相结合表明,动作性震颤起源于任何肌肉神经支配,并且等同于特定肌肉所有运动神经元放电的机械效应。震颤的功率谱主要由放电运动神经元在募集(7 - 8次/秒)和完全融合(25次/秒)之间的抽搐收缩引起。代表主要震颤频率的频谱最大值对应于每个运动神经元募集后刚好出现的放电频率。这些新募集的运动单位的抽搐收缩在机械上融合程度最低。运动障碍患者的震颤功率谱与随意收缩期间运动神经元的放电和募集行为变化平行。同时记录的两个运动单位放电之间的相关性显示出所有放电频率有同步的趋势,其同步程度与个体震颤强度相对应。