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在缩短肘伸展之前的力矩产生过程中,人类肘肌运动单位募集阈值的变化。

Changes in motor unit recruitment thresholds of the human anconeus muscle during torque development preceding shortening elbow extensions.

机构信息

Canadian Centre for Activity and Aging, School of Kinesiology, The University of Western Ontario, London, Ontario, Canada.

出版信息

J Neurophysiol. 2012 May;107(10):2876-84. doi: 10.1152/jn.00902.2011. Epub 2012 Feb 29.

Abstract

Rate of torque development and the subsequent movement velocity are modulated by motor unit (MU) properties, primarily MU discharge rate and MU recruitment threshold (MURT). In isometric conditions, MURTs have been shown to decrease with increased rates of torque development. It is unclear whether this relationship is similar in the production of dynamic shortening contractions. Using fast joint velocities to drive the system, we aimed to determine how anconeus MURTs recorded during the torque production phase preceding movement were affected in relation to the resultant peak elbow extension velocity. Recruitment thresholds of 17 MUs from 9 young men were tracked throughout non-isokinetic dynamic elbow extensions with velocities ranging from 64°/s to 500°/s at a constant resistance of 25% of maximal voluntary isometric contraction and during isometric elbow extensions (0°/s). Relative MURTs decreased ∼50% from the slowest (<25% of maximal velocity) to the fastest (>75% of maximal velocity) resultant velocity ranges (P < 0.05). Although a significant (P < 0.001) but weak (r = -0.27, R(2) = 0.08) relationship was observed between MURT and resultant peak elbow extension velocity for the group, only 7 of the 17 MUs displayed significant moderate (r = -0.40, R(2) = 0.17) to strong (r = -0.85, R(2) = 0.73) negative MURT-velocity relationships. These data indicate variable responses of MURTs with increasing resultant peak velocity, which may be related to the intrinsic properties of individual MUs.

摘要

力矩发展的速度和随后的运动速度是由运动单位(MU)的特性调节的,主要是 MU 的放电速度和 MU 的募集阈值(MURT)。在等长条件下,已经表明 MURT 随着力矩发展速度的增加而降低。目前尚不清楚这种关系在动态缩短收缩的产生中是否相似。使用快速关节速度来驱动系统,我们旨在确定在运动前的力矩产生阶段记录的 anconeus MURT 与产生的峰值肘部伸展速度之间的关系如何受到影响。9 名年轻男性的 17 个 MU 的募集阈值在恒定阻力为最大随意等长收缩的 25%的情况下,以 64°/s 至 500°/s 的非等速动态肘部伸展和等长肘部伸展(0°/s)中进行了跟踪。从最慢(<最大速度的 25%)到最快(>最大速度的 75%)的结果速度范围,相对 MURT 下降了约 50%(P < 0.05)。尽管观察到 MURT 与组的峰值肘部伸展速度之间存在显著(P < 0.001)但较弱(r = -0.27,R² = 0.08)的关系,但只有 17 个 MU 中的 7 个显示出显著的中度(r = -0.40,R² = 0.17)至强(r = -0.85,R² = 0.73)负 MURT-速度关系。这些数据表明 MURT 随着结果峰值速度的增加而出现不同的反应,这可能与个体 MU 的固有特性有关。

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