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两种实验方法考察男性举重运动员杠铃深蹲过程中习惯性和人为控制的脚部放置角度对动力学、运动学和肌肉力量的影响。

Two-Experiment Examination of Habitual and Manipulated Foot Placement Angles on the Kinetics, Kinematics, and Muscle Forces of the Barbell Back Squat in Male Lifters.

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 2RA, UK.

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

出版信息

Sensors (Basel). 2022 Sep 15;22(18):6999. doi: 10.3390/s22186999.

Abstract

This two-experiment study aimed to examine the effects of different habitual foot placement angles and also the effects of manipulating the foot placement angle on the kinetics, three-dimensional kinematics and muscle forces of the squat. In experiment 1, seventy lifters completed squats at 70% of their one repetition maximum using a self-preferred placement angle. They were separated based on their habitual foot angle into three groups HIGH, MEDIUM and LOW. In experiment 2, twenty lifters performed squats using the same relative mass in four different foot placement angle conditions (0°, 21°, 42° and control). Three-dimensional kinematics were measured using an eight-camera motion analysis system, ground reaction forces (GRF) using a force platform, and muscle forces using musculoskeletal modelling techniques. In experiment 1, the impulse of the medial GRF, in the descent and ascent phases, was significantly greater in the HIGH group compared to LOW, and in experiment 2 statistically greater in the 42° compared to the 21°, 0° and control conditions. Experiment 2 showed that the control condition statistically increased quadriceps muscle forces in relation to 0°, whereas the 0° condition significantly enhanced gluteus maximus, gastrocnemius and soleus forces compared to control. In experiment 1, patellofemoral joint stress was significantly greater in the HIGH group compared to LOW, and in experiment 2, patellar and patellofemoral loading were statistically greater in the control compared to the 42°, 21°, 0° and control conditions. Owing to the greater medial GRF's, increased foot placement angles may improve physical preparedness for sprint performance and rapid changes of direction. Reducing the foot angle may attenuate the biomechanical mechanisms linked to the aetiology of knee pathologies and to promote gluteus maximus, gastrocnemius and soleus muscular development. As such, though there does not appear to be an optimal foot placement angle, the observations from this study can be utilised by both strength and conditioning and sports therapy practitioners seeking to maximise training and rehabilitative adaptations.

摘要

本两项实验研究旨在检验不同习惯性足放置角度的影响,以及改变足放置角度对深蹲的动力学、三维运动学和肌肉力量的影响。在实验 1 中,70 名举重运动员使用自感舒适的放置角度完成了 70%最大重复次数的深蹲。根据习惯性足角,他们被分为三组:高、中、低。在实验 2 中,20 名举重运动员在四种不同足放置角度条件(0°、21°、42°和对照)下进行了深蹲。三维运动学使用八摄像机运动分析系统测量,地面反作用力(GRF)使用力平台,肌肉力量使用肌肉骨骼建模技术。在实验 1 中,在下降和上升阶段,内侧 GRF 的冲量在高组显著大于低组,在实验 2 中,42°显著大于 21°、0°和对照条件。实验 2 表明,对照条件与 0°相比,显著增加了股四头肌的肌肉力量,而 0°条件与对照相比,显著增强了臀大肌、腓肠肌和比目鱼肌的力量。在实验 1 中,高组的髌股关节压力显著大于低组,在实验 2 中,对照条件与 42°、21°、0°和对照条件相比,髌腱和髌股关节的负荷显著增大。由于内侧 GRF 较大,增加足放置角度可能会提高短跑表现和快速变向的身体准备。减小足角度可能会减弱与膝关节疾病病因相关的生物力学机制,并促进臀大肌、腓肠肌和比目鱼肌的发育。因此,虽然似乎没有最佳的足放置角度,但本研究的观察结果可以为力量和调节以及运动治疗从业者提供帮助,以最大限度地提高训练和康复适应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3b2/9501107/ddd85e21f376/sensors-22-06999-g001.jpg

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