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Three-dimensional kinetic analysis of lower limbs in barbell squat

机译:杠铃蹲下肢的三维动力学分析

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Barbell squat can improve the lower body strength for weightlifter to enhance their performance. Previous studies mentioned that the full three-dimensional biomechanical analysis of lower limbs is greatly helpful for understanding the musculoskeletal mechanism in barbell squat exercise. The purpose of this study was to estimate the joint kinetics of lower limbs during the barbell squat. Thirteen male weightlifters from college weightlifting team members performed barbell squat with 85% weight of his one repetition maximum in the motion analysis laboratory. Motion analysis system and two force plateforms were used to collect the kinematic and kinetic data. The results showed that the major joint movements were not only occurred in the sagittal plane, but also in the frontal plane and transverse plane. The knee and hip joints suffered high compression forces and shear forces. The results also showed that ankle plantarflexor, knee extensor, hip flexor, and abductor were dominant muscles in barbell squat exercise. These finding could provide the additional guidelines for sports injury prevention and treatment, as well as guidelines of strength training program design for the coaches and athletic trainer.
机译:杠铃深蹲可以提高举重运动员的下半身力量,以增强其性能。先前的研究提到,对下肢进行完整的三维生物力学分析对于理解杠铃深蹲运动中的肌肉骨骼机制非常有帮助。这项研究的目的是估计杠铃蹲下过程中下肢的关节动力学。来自大学举重队的13名男性举重运动员在运动分析实验室中以杠铃蹲下动作进行了一次最大重复动作的85%的举重。运动分析系统和两个受力平台用于收集运动学和动力学数据。结果表明,主要的关节运动不仅发生在矢状面,还发生在额叶面和横切面。膝关节和髋关节承受高压缩力和剪切力。结果还显示,踝plant屈肌,膝盖伸肌,髋屈肌和外展肌是杠铃深蹲运动中的主要肌肉。这些发现可以为运动损伤的预防和治疗提供补充指导,以及为教练和运动教练提供力量训练计划设计的指导。

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