通过最新一代惯性传感器定义泰拳环形踢腿的物理动力学参数,并对文献进行了批判性的回顾

Michela Socci, C. H. Varde’i, M. Giovannelli, Antonio Cejudo-Palomo, F. D'Elia, Alberto Cruciani, R. Izzo
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摘要

近年来,在武术、格斗运动等体育学科的科学研究中,应用惯性技术等专门的先进技术对运动分析进行研究,以更好地定义技术成分的真实动态,以适应训练设计,也成为必不可少的。大量的文献研究集中在格斗运动和武术中的回旋踢运动学,而对泰拳的运动学和运动学分析,特别是对其回旋踢技术的研究相对较少。本研究旨在突出圆形踢腿姿势的质量,并通过分段运动动力学实现其最大的有效性,评估技术执行本身所涉及的不同身体部分的加速度和执行时间,显然在表演意义上。值得注意的是,惯性数据显示,在准备和执行阶段,膝关节和踝关节的线速度都大于髋关节,而在执行阶段的角速度,髋关节的加速度高于膝关节和踝关节。因此,这些结果强调了关节内和肌肉内协调过程的基本重要性,这些协调过程允许或不允许运动的线性和流动性,这些运动是获得最大节间性能的基础,以便在击球的顶点提供最大的加速度,从而具有最大的击球效率和最佳性能。
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Definition of physical-dynamic parameters in circular kick in Muay Thai through latest generation inertial sensors with a critical review of the literature
In recent years, the study of movement analysis with the application of dedicated advanced technologies, such as inertial technologies, has also become essential in scientific research of sports disciplines such as martial arts and combat sports, to better define the real dynamics of technical components in order to adapt the training design. A great number of studies in the literature have focused on the kinematics of circular kick in combat sport and martial arts but a relatively small number have focused on the kinetic and kinematic analysis of Muay Thai and especially its circular kick technique. This study aims to highlight instrumentally the quality of circular kick gesture and through which segmental motor dynamics it achieves its greatest effectiveness, evaluating the accelerations and execution times of the different body segments involved in technical execution itself obviously in a performative sense. It is important to note that the inertial data shows that both knee and ankle have an increasing linear velocity greater than the hip in the preparation and execution phase, while for the angular velocity in the execution phase it is the hip that has higher acceleration than the knee and ankle. These results, therefore, highlight the basic importance of intra-articular and intramuscular coordination processes that allow or not linearity and fluidity of movements that are the basis to obtain maximum intersegmental performance in order to deliver maximum acceleration in the apical point of the shot and thus have the maximum effectiveness of hit and therefore the optimal performance.
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