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一项关于站距对杠铃深蹲生物力学影响的多实验研究。

A Multi-Experiment Investigation of the Effects Stance Width on the Biomechanics of the Barbell Squat.

作者信息

Sinclair Jonathan, Taylor Paul John, Jones Bryan, Butters Bobbie, Bentley Ian, Edmundson Christopher James

机构信息

Research Centre for Applied Sport, Physical Activity and Performance, School of Sport & Health Sciences, Faculty of Allied Health and Wellbeing, University of Central Lancashire, Preston PR1 2HE, UK.

Faculty of Science & Technology, School of Psychology & Computer Sciences, University of Central Lancashire, Preston PR1 2HE, UK.

出版信息

Sports (Basel). 2022 Sep 14;10(9):136. doi: 10.3390/sports10090136.

Abstract

This two-experiment study aimed to explore habitual and manipulated stance widths on squat biomechanics. In experiment one, 70 lifters completed back squats at 70%, 1 repetition maximum (1RM), and were split into groups (NARROW < 1.06 * greater trochanter width (GTW), MID 1.06−1.18 * GTW and WIDE > 1.37 * GTW) according to their self-selected stance width. In experiment two, 20 lifters performed squats at 70%, 1RM, in three conditions (NARROW, MID and WIDE, 1.0, 1.25 and 1.5 * GTW). The three-dimensional kinematics were measured using a motion capture system, ground reaction forces (GRF) using a force platform, and the muscle forces using musculoskeletal modelling. In experiment two, the peak power was significantly greater in the NARROW condition, whereas both experiments showed the medial GRF impulse was significantly greater in the WIDE stance. Experiment two showed the NARROW condition significantly increased the quadriceps forces, whereas both experiments showed that the WIDE stance width significantly enhanced the posterior-chain muscle forces. The NARROW condition may improve the high mechanical power movement performance and promote the quadriceps muscle development. Greater stance widths may improve sprint and rapid change-of-direction performance and promote posterior-chain muscle hypertrophy. Whilst it appears that there is not an optimal stance width, these observations can be utilized by strength and conditioning practitioners seeking to maximize training adaptations.

摘要

这项双实验研究旨在探讨深蹲生物力学中习惯性和人为操控的站姿宽度。在实验一中,70名举重运动员以70%的1次最大重复量(1RM)完成后深蹲,并根据他们自行选择的站姿宽度分为几组(窄距<1.06×大转子宽度(GTW)、中距1.06 - 1.18×GTW和宽距>1.37×GTW)。在实验二中,20名举重运动员在70%的1RM下,在三种条件(窄距、中距和宽距,分别为1.0、1.25和1.5×GTW)下进行深蹲。使用运动捕捉系统测量三维运动学,使用测力平台测量地面反作用力(GRF),并使用肌肉骨骼模型测量肌肉力量。在实验二中,窄距条件下的峰值功率显著更高,而两个实验均表明宽距站姿下的内侧GRF冲量显著更大。实验二表明窄距条件显著增加了股四头肌力量,而两个实验均表明宽距站姿显著增强了后链肌肉力量。窄距条件可能会改善高机械功率运动表现并促进股四头肌发育。更大的站姿宽度可能会改善短跑和快速变向表现并促进后链肌肉肥大。虽然似乎不存在最佳的站姿宽度,但这些观察结果可供寻求最大化训练适应性的体能训练从业者利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e71/9503729/9989ef6707cd/sports-10-00136-g001.jpg

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