Thiele B, Böhle A
EEG EMG Z Elektroenzephalogr Elektromyogr Verwandte Geb. 1978 Jun;9(2):125-30.
40 motor unit potentials recorded with concentric needle electrodes (Fig. 1) from the extensor digitorum communis muscle were analysed in order to find out the number of contributing muscle fibre action potentials. A "fractionation" of the motor unit potential was achieved by maintained voluntary activity under ischemic condition leading to a consecutive transmission block in the motor endplates within the active motor unit. Thus one after the other muscle fibre action potential failed to occur leading to a stepwise reduction of the motor unit potential which finally was abolished (Fig. 2 and 3). With technique it was shown that 65% of the area of the investigated motor unit potentials were composed of two to twelve (mean 5) muscle fibre action potentials (Fig 4). No correlation between the number of spike-components and duration or amplitude of the motor unit potential was found (Fig. 5). The non-analysed area of the motor unit potential probably represented activity of more distant muscle fibres of the motor unit.
为了确定参与其中的肌纤维动作电位的数量,我们分析了用同心针电极从指总伸肌记录到的40个运动单位电位(图1)。通过在缺血状态下保持自主活动,使活跃运动单位内的运动终板连续发生传导阻滞,从而实现运动单位电位的“分波”。这样,肌纤维动作电位相继未能出现,导致运动单位电位逐步降低,最终消失(图2和图3)。通过该技术表明,所研究的运动单位电位面积的65%由两至十二个(平均5个)肌纤维动作电位组成(图4)。未发现棘波成分数量与运动单位电位持续时间或幅度之间存在相关性(图5)。运动单位电位未分析的区域可能代表运动单位中更远处肌纤维的活动。