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The absence of neuromuscular transmission failure in sustained maximal voluntary contractions.

机译:在持续最大自主收缩中没有神经肌肉传递失败。

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摘要

1. Muscle mass action potentials (M waves) were evoked by supramaximal single shocks to the ulnar nerve given at 5-10 s intervals throughout sustained isometric maximal voluntary contractions (m.v.c.) of the adductor pollicis and first dorsal interosseous muscles. Both muscles were fatigued simultaneously. Recordings were made from the muscle surface and also intramuscularly. 2. During a maximal contraction lasting for 60 s there was 30-50% loss of force. No decline was observed in intramuscularly recorded M wave amplitude, while the areas of the total and half M wave forms increased due to a slowing in conduction velocity. The area measured over a fixed time period declined. No evidence was obtained that these M wave potentials were contaminated by electrical activity arising in adjacent muscles. The size of the single unit potentials appeared to remain unaltered during maximal voluntary activity. 3. We conclude that neuromuscular block is not a cause of force loss during this type of fatiguing voluntary contraction.
机译:1.在内收肌和第一背骨之间持续等距最大自发性收缩(m.v.c.)的过程中,以5-10 s间隔对尺神经进行超最大单次电击,诱发肌肉质量动作电位(M波)。两条肌肉同时疲劳。从肌肉表面以及肌肉内进行记录。 2.在最大收缩持续60 s的过程中,力损失了30-50%。肌内记录的M波振幅未见下降,而总M波和一半M波的面积由于传导速度的减慢而增加。在固定时间段内测得的面积下降。没有证据表明这些M波电势被相邻肌肉中产生的电活动所污染。在最大的自愿活动期间,单个单位电位的大小似乎保持不变。 3.我们得出结论,在这种类型的疲劳性自发性收缩过程中,神经肌肉阻滞不是力量损失的原因。

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