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首页> 外文期刊>Muscle and Nerve >Augmentation of the contraction force of human thenar muscles by and during brief discharge trains.
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Augmentation of the contraction force of human thenar muscles by and during brief discharge trains.

机译:短暂放电训练过程中以及在短暂放电训练过程中,人类the肌的收缩力增强。

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摘要

We investigated the influence of the history of activity on the contractile properties of abductor pollicis brevis (APB) to define how the forces produced by individual stimuli change within a stimulus train, with a view to clarifying the optimal discharge frequency for force production in brief trains. Supramaximal electrical stimuli were delivered to the median nerve at the wrist singly or in trains of 2-5 at various interstimulus intervals (ISIs). The force and electromyographic (EMG) responses to trains of n stimuli were defined by online subtraction of the responses to n - 1 stimuli. The force attributable to the nth stimulus was normalized to that produced by a single stimulus. The contraction force produced by 2 stimuli exceeded the force expected with linear summation of 2 single twitches by 30-40% at ISIs of 2-100 ms. Increasing the number of stimuli resulted in less augmentation of the force produced by the last stimulus in the train for ISIs up to 20 ms, but greater augmentation for ISIs of 50-100 ms. At ISIs of less than 10 ms, the time to peak force produced by the last stimulus in a 5-pulse train was delayed by approximately 100 ms, the peak force produced by that stimulus was less than that produced by a single stimulus, and it occurred on the falling phase of the overall contraction. These properties are best explained by the catchlike property of muscle. This implies that the augmentation of contraction force due to this property can increase throughout a stimulus train, and is not restricted to the doublet discharges that have conventionally been studied. We conclude that, with brief discharge trains, maximal forces occur at ISIs of 56-75 ms, intervals that are longer than those conventionally associated with the catchlike property. Discharge rates of 15-20 HZ appear to be optimal for force generation by APB during steady contractions.
机译:我们研究了活动史对外展短缩绑腿者(APB)收缩特性的影响,以定义刺激序列中单个刺激产生的力如何变化,以阐明简短序列中产生力的最佳放电频率。 。超最大电刺激以不同的刺激间隔(ISI)单独或以2-5的速度传递到手腕的正中神经。通过对n-1刺激的响应进行在线减法来定义对n刺激序列的作用力和肌电图(EMG)响应。将归因于第n个刺激的力归一化为由单个刺激产生的力。在2-100 ms的ISI时,由2个刺激产生的收缩力比2个单抽动的线性求和所预期的力高30-40%。刺激次数的增加导致火车中最后一次刺激所产生的力对于ISI的增加幅度较小,可达20 ms,而对ISI的增大幅度较大,为50-100 ms。在ISI小于10毫秒时,由5脉冲序列中的最后一个刺激产生的峰值力的时间延迟了大约100毫秒,该刺激产生的峰值力小于单个刺激产生的峰值力,并且发生在整体收缩的下降阶段。这些特性最好用肌肉的捕捉特性来解释。这意味着由于该特性而引起的收缩力的增加可以在整个刺激过程中增加,并且不限于常规研究的双峰放电。我们得出的结论是,在短暂的放电过程中,最大的力出现在56-75 ms的ISI处,其间隔比传统上与钩状特性相关的间隔长。对于稳定收缩期间APB产生力而言,15-20 HZ的放电速率似乎是最佳的。

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