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最大随意爆发性向心收缩的神经肌肉表现受角速度影响。

Neuromuscular performance of maximal voluntary explosive concentric contractions is influenced by angular acceleration.

机构信息

Human Movement Science, Faculty of Sport Science, Ruhr-University Bochum, Bochum, Germany.

出版信息

Scand J Med Sci Sports. 2017 Dec;27(12):1739-1749. doi: 10.1111/sms.12812. Epub 2016 Dec 28.

DOI:10.1111/sms.12812
PMID:28028870
Abstract

Torque production during maximal voluntary explosive contractions is considered to be a functionally more relevant neuromuscular measure than steady-state torque, but little is known about accelerated concentric contractions. This study investigated torque, muscle activity, and fascicle behavior during isometric and fast concentric contractions of quadriceps femoris. Ten participants performed maximal voluntary explosive isometric, isovelocity, and additional concentric knee extensions at angular accelerations ranging from 700 to 4000° s that resulted in an angular velocity of 300° s at 40° knee flexion. Concentric torque at 40° knee flexion was corrected for inertia, and the corresponding isometric torque was matched to the time when the target knee angle of 40° was reached during concentric contractions. Electromyography of quadriceps femoris and hamstrings and ultrasound of vastus lateralis were measured to determine muscle activity, fascicle length, and fascicle velocity (FV). The faster the acceleration, the more torque was produced during concentric contractions at 40° knee flexion, which was accompanied by a reduction in FV. In comparison with isometric conditions, concentric quadriceps muscle activity was increased and torque during accelerations ≥3000° s equaled the time-matched isometric torque. Our results provide novel evidence that acceleration influences torque production during maximal voluntary explosive concentric contractions. This is suggested to be due to series elasticity and reduced force depression.

摘要

在最大自主爆发性等长收缩期间产生的扭矩被认为是一种比稳态扭矩更具功能相关性的神经肌肉测量指标,但对于加速向心收缩知之甚少。本研究调查了股四头肌等长和快速向心收缩期间的扭矩、肌肉活动和肌束行为。 10 名参与者在 700 到 4000° s 的角速度范围内进行最大自主爆发性等长、等速和附加向心膝关节伸展运动,结果在 40°膝关节弯曲时达到 300° s 的角速度。将 40°膝关节弯曲处的向心扭矩校正为惯性,并将相应的等长扭矩与向心收缩过程中达到目标膝关节角度 40°的时间匹配。股四头肌和腘绳肌的肌电图和股外侧肌的超声测量用于确定肌肉活动、肌束长度和肌束速度 (FV)。加速度越快,在 40°膝关节弯曲时的向心收缩中产生的扭矩就越大,这伴随着 FV 的降低。与等长条件相比,向心股四头肌肌肉活动增加,在加速度≥3000° s 时的扭矩等于时间匹配的等长扭矩。我们的研究结果提供了新的证据,表明加速度会影响最大自主爆发性向心收缩期间的扭矩产生。这可能是由于串联弹性和力衰减减少所致。

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