Wierzbicka M M, Wolf W, Staude G, Konstanzer A, Dengler R
Spinal Cord Injury Service, Brocton/West Roxbury VA Medical Center, Boston, MA.
Electromyogr Clin Neurophysiol. 1993 Jul-Aug;33(5):271-8.
It was recently suggested that a premotion silent period in isometrically loaded agonist muscle reflects transition process in switching motor program from an isometric to an isotonic condition. To test this hypothesis we investigated changes in EMG activity of a biceps muscle during motor preparatory phase in an entirely isometric paradigm. Five healthy volunteers produced rapid isometric elbow flexions superimposed on a slightly sustained contraction during self-paced and reaction time conditions. In addition to surface EMG, single motor units were recorded in agonist muscle prior to a rapid contraction. Silent period was found in responses of three out of five subjects, whereas inhibition of some but not all tonically active motor units was observed in all studied subjects prior to the phasic EMG burst. Inhibition of motor unit activity occurred more often in self-paced than reaction time contractions. Our results indicate that inhibition is not always powerful enough to produce a complete electrical silence, and weaker inhibitory effects were observed as a declining number of firing motor units. We conclude that the silent period or depression of the EMG activity is associated with changes in motor program from tonic to phasic muscle activation and is not merely a consequence of changes from an isometric to an isotonic condition.
最近有人提出,等长收缩的主动肌中的预动静息期反映了运动程序从等长状态转换到等张状态的过渡过程。为了验证这一假设,我们在完全等长的范式下,研究了运动准备阶段肱二头肌肌电图(EMG)活动的变化。五名健康志愿者在自定节奏和反应时间条件下,在轻微持续收缩的基础上进行快速等长屈肘动作。除了表面肌电图外,在快速收缩前还记录了主动肌中的单个运动单位。在五名受试者中有三名的反应中发现了静息期,而在所有研究对象的相位肌电图爆发之前,均观察到部分而非全部紧张性活动运动单位受到抑制。运动单位活动的抑制在自定节奏收缩中比在反应时间收缩中更常见。我们的结果表明,抑制作用并不总是强大到足以产生完全的电静息,并且随着发放运动单位数量的减少,观察到较弱的抑制作用。我们得出结论,静息期或肌电图活动的抑制与运动程序从紧张性肌肉激活到相位性肌肉激活的变化有关,而不仅仅是从等长状态到等张状态变化的结果。