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杠铃臀推的综合生物力学分析。

A comprehensive biomechanical analysis of the barbell hip thrust.

机构信息

Department for Health, University of Bath, Bath, United Kingdom.

Cardiff School of Sport and Health Sciences, Cardiff Metropolitan University, Cardiff, United Kingdom.

出版信息

PLoS One. 2021 Mar 29;16(3):e0249307. doi: 10.1371/journal.pone.0249307. eCollection 2021.

Abstract

Barbell hip thrust exercises have risen in popularity within the biomechanics and strength and conditioning literature over recent years, as a method of developing the hip extensor musculature. Biomechanical analysis of the hip thrust beyond electromyography is yet to be conducted. The aim of this study was therefore to perform the first comprehensive biomechanical analysis the barbell hip thrust. Nineteen resistance trained males performed three repetitions of the barbell hip thrust at 70% one-repetition maximum. Kinematic (250 Hz) and kinetic (1000 Hz) data were used to calculate angle, angular velocity, moment and power data at the ankle, knee, hip and pelvic-trunk joint during the lifting phase. Results highlighted that the hip thrust elicits significantly (p < 0.05) greater bilateral extensor demand at the hip joint in comparison with the knee and pelvic-trunk joints, whilst ankle joint kinetics were found to be negligible. Against contemporary belief, hip extensor moments were not found to be consistent throughout the repetition and instead diminished throughout the lifting phase. The current study provides unique insight to joint kinematics and kinetics of the barbell hip thrust, based on a novel approach, that offers a robust evidence base for practitioners to guide exercise selection.

摘要

近年来,杠铃臀推在生物力学和力量与体能文献中越来越受欢迎,成为一种锻炼髋关节伸肌的方法。但对于杠铃臀推的生物力学分析,除肌电图外,尚未进行其他分析。因此,本研究旨在对杠铃臀推进行首次全面的生物力学分析。19 名有抗阻训练经验的男性以 70%的 1 次最大重复重量进行 3 次杠铃臀推。在提升阶段,利用运动学(250Hz)和动力学(1000Hz)数据,计算踝关节、膝关节、髋关节和骨盆-躯干关节的角度、角速度、力矩和功率数据。结果表明,与膝关节和骨盆-躯干关节相比,杠铃臀推在髋关节处引起的双侧伸肌需求明显更大(p<0.05),而踝关节的动力学可以忽略不计。与当前的观点相反,髋伸肌力矩在整个重复过程中并不一致,而是在提升阶段逐渐减小。本研究提供了一种新颖的方法,对杠铃臀推的关节运动学和动力学进行了独特的分析,为从业者提供了一个强大的证据基础,以指导运动选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a052/8006986/749cb97fc59a/pone.0249307.g001.jpg

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