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人类运动神经元在不同肌肉长度下的自发放电频率。

Voluntary discharge frequencies of human motoneurons at different muscle lengths.

作者信息

Bigland-Ritchie B R, Furbush F H, Gandevia S C, Thomas C K

机构信息

John B. Pierce Laboratory, New Haven, CT 06519.

出版信息

Muscle Nerve. 1992 Feb;15(2):130-7. doi: 10.1002/mus.880150203.

Abstract

The relationship between the discharge frequencies of motoneurons and the voluntary force at high contraction strengths (50% to 100% maximum) was determined for tibialis anterior with the ankle: (i) at 90 degrees (control length); and (ii) this angle reduced by about 15 degrees (short length), an amount sufficient to reduce the maximal voluntary force by about 35%. In the shortened position, twitch contraction and half-relaxation times were reduced by 11% and 18%, respectively. At both muscle lengths, the ability to activate the muscle fully by voluntary effort was confirmed by twitch interpolation. Motor unit firing rates were recorded during isometric voluntary contractions lasting 10 seconds, performed at 50%, 75%, and 100% maximal force. At each length, discharge rates varied in proportion to the relative force exerted. Despite the difference in twitch contractile speed at the two lengths, no significant differences were found between motoneuron discharge rates recorded at each muscle length during maximal or submaximal contractions.

摘要

通过以下方式确定了在高收缩强度(最大收缩力的50%至100%)下,运动神经元放电频率与胫骨前肌在踝关节处的随意力之间的关系:(i) 在90度(对照长度)时;以及 (ii) 将该角度减小约15度(短长度),这一角度减小幅度足以使最大随意力降低约35%。在缩短位置,单收缩和半松弛时间分别减少了11%和18%。在两种肌肉长度下,通过单收缩内插法证实了通过随意努力充分激活肌肉的能力。在等长随意收缩持续10秒期间记录运动单位放电频率,收缩强度为最大力的50%、75%和100%。在每个长度下,放电频率与所施加的相对力成比例变化。尽管在两种长度下单收缩收缩速度存在差异,但在最大或次最大收缩期间,在每个肌肉长度记录的运动神经元放电频率之间未发现显著差异。

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