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在无前腿旋转限制和有前腿旋转限制的杠铃深蹲中,净关节力矩和肌肉激活情况。

Net joint moments and muscle activation in barbell squats without and with restricted anterior leg rotation.

作者信息

Chiu Loren Z F, vonGaza Gabriella L, Jean Liane M Y

机构信息

a Neuromusculoskeletal Mechanics Research Program, Faculty of Physical Education and Recreation , University of Alberta , Edmonton , Alberta , Canada.

出版信息

J Sports Sci. 2017 Jan;35(1):35-43. doi: 10.1080/02640414.2016.1154978. Epub 2016 Mar 1.

DOI:10.1080/02640414.2016.1154978
PMID:26930422
Abstract

Muscle utilisation in squat exercise depends on technique. The purpose of this study was to compare net joint moments (NJMs) and muscle activation during squats without and with restricted leg dorsiflexion. Experienced men (n = 5) and women (n = 4) performed full squats at 80% one repetition maximum. 3D motion analysis, force platform and (EMG) data were collected. Restricting anterior leg rotation reduced anterior leg (P = 0.001) and posterior thigh (P < 0.001) rotations, resulting in a smaller knee flexion range of motion (P < 0.001). At maximum squat depth, ankle plantar flexor (P < 0.001) and knee extensor (P < 0.001) NJM were higher in unrestricted squats. Hip extensor NJM (P = 0.14) was not different between squat types at maximum squat depth. Vastus lateralis (P > 0.05), vastus medialis (P > 0.05) and rectus femoris (P > 0.05) EMG were not different between squat types. Unrestricted squats have higher ankle plantar flexor and knee extensor NJM than previously reported from jumping and landing. However, ankle plantar flexor and knee extensor NJM are lower in restricted squats than previous studies of jumping and landing. The high NJM in unrestricted squat exercise performed through a full range of motion suggests this squat type would be more effective to stimulate adaptations in the lower extremity musculature than restricted squats.

摘要

深蹲练习中肌肉的运用取决于技术。本研究的目的是比较无腿部背屈限制和有腿部背屈限制的深蹲过程中的净关节力矩(NJMs)和肌肉激活情况。有经验的男性(n = 5)和女性(n = 4)以80%的一次最大重复量进行全蹲。收集了三维运动分析、力平台和肌电图(EMG)数据。限制前腿旋转减少了前腿(P = 0.001)和大腿后部(P < 0.001)的旋转,导致膝关节屈伸活动范围减小(P < 0.001)。在最大深蹲深度时,无限制深蹲中踝关节跖屈肌(P < 0.001)和膝关节伸肌(P < 0.001)的净关节力矩更高。最大深蹲深度时,两种深蹲类型之间的髋关节伸肌净关节力矩(P = 0.14)没有差异。两种深蹲类型之间的股外侧肌(P > 0.05)、股内侧肌(P > 0.05)和股直肌(P > 0.05)肌电图没有差异。无限制深蹲的踝关节跖屈肌和膝关节伸肌净关节力矩高于先前关于跳跃和落地的报道。然而,有腿部背屈限制的深蹲中踝关节跖屈肌和膝关节伸肌净关节力矩低于先前关于跳跃和落地的研究。通过全范围运动进行的无限制深蹲练习中较高的净关节力矩表明,这种深蹲类型比有腿部背屈限制的深蹲更能有效地刺激下肢肌肉组织的适应性变化。

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