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The contractile properties of human motor units during voluntary isometric contractions

机译:等距自动收缩过程中人体运动单位的收缩特性

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摘要

1. The electrical activity of single motor units has been recorded from the first dorsal interosseus muscle of normal human subjects during voluntary, isometric contractions, together with the force generated by the muscle.2. By averaging the force correlated with the impulses from a single motor unit, the contraction time and twitch tension generated by that motor unit could be measured. When the rate of discharge was limited, either voluntarily or by automatic selection of intervals for analysis, the time for the tension to decline to half its maximum value (half-relaxation time) could also be measured for some motor units.3. Under our experimental conditions the trains of impulses from different motor units in most subjects were generated quite independently as tested by (a) measuring the correlation between activity in single units and that in the whole muscle as recorded by the surface electromyogram (e.m.g.), (b) measuring the cross-correlations between pairs of single units and (c) comparing the tension generated by stimulating single motor units with the average tension correlated in time with voluntary activity of single units in the same location.4. In one normal subject evidence of synchronization between separate motor units was obtained. Cross-correlation studies suggested that the cause of the synchronization was the presence of substantial common excitation received by the various motor units in the muscle.5. The frequency response for the contractions of single motor units was well fitted by that for a linear, second-order system with nearly critical damping. However, when stimulation of a few motor units was superimposed on a voluntary contraction, underdamped (oscillatory) responses were seen which were probably of reflex origin.6. The significance of these results in relation to the normal postural tremor in hand muscles is discussed.
机译:1.在正常的等距收缩过程中,从正常人的第一副背骨间肌肉中记录了单个运动单位的电活动,以及由肌肉产生的力。2。通过平均与来自单个电机单元的脉冲相关的力,可以测量该电机单元产生的收缩时间和抽拉张力。当排放速率受到限制时,无论是自愿还是通过自动选择分析间隔,对于某些电动机单元,也可以测量张力下降到其最大值一半的时间(半松弛时间)。3。在我们的实验条件下,大多数受试者从不同运动单位产生的冲动序列是非常独立地产生的,方法是:通过(a)测量表面肌电图(emg)记录的单个单位活动与整个肌肉活动之间的相关性, b)测量成对的单个单元之间的互相关性;以及(c)将通过刺激单个电机单元产生的张力与在同一位置的单个单元的自愿活动及时关联的平均张力进行比较。4。在一个正常的受试者中,获得了分离的运动单元之间同步的证据。互相关研究表明,同步的原因是肌肉中各个运动单元接收到大量共同的激励。5。单个电动机单元收缩的频率响应与具有几乎临界阻尼的线性二阶系统的频率响应非常吻合。但是,当一些运动单位的刺激叠加在自愿性收缩上时,会发现阻尼不足(振荡)反应,很可能是反射性的。6。讨论了这些结果与手部肌肉正常姿势性震颤有关的意义。

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