不同测量方法对专业运动员生理和生物力学效率分析的整合方案

M. Milani, L. Montorsi, L. Fontanili, Salvatore Rossini, R. Citarella
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摘要

本文的重点是分析一个专业运动员的生理和生物力学效率的方法,以整合标准的准备程序。该方法结合了自主开发的多单轴力板原型,用于测量运动过程中地面反作用力的垂直分量,并采用红外运动捕捉技术精确测量身体运动。该程序适用于顶级职业排球运动员,并整合了整个赛季训练中使用的工作程序。运动员的动态表现是根据疲劳阈值和有氧负荷来衡量的。所提出的方法证明是一种准确可靠的量化工具,对于慢速和快速运动,运动员达到规定的训练目标的效率和在制定练习常规时所达到的精度。此外,运动员的动态响应也通过评估身体在负荷期间的位置以及运动速度和相应的与地面的相互作用来测量。该分析验证了在与地面的脉冲接触阶段是否存在下肢的不对称载荷和施加的功率。在分析过程中进行的测量提供了运动员在整个赛季训练中的表现图,单足和双足运动可以与运动结果的时间演变相关联,例如跳跃长度和高度,速度,精度。因此,在训练过程中,姿势和技术方面的效率低下可以被测量和纠正,从而提高表现,减少受伤的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration Protocol of Different Measurement Methods for the Analysis of the Physiological and Biomechanical Efficiency of a Professional Athlete
The paper focuses on the methodology for the analysis of the physiological and biomechanical efficiency of a professional athlete for integrating the standard preparation routine. The proposed methodology combines an in-house developed prototype of multiple uniaxial force plates for the measurement of the vertical component of ground reaction forces during movement and an infrared motion capture technique is adopted for measuring accurately the body motion. The procedure is applied on a top level professional volley player and integrates the working routines used for the training over an entire season. The dynamic performance of the athlete is measured in terms of fatigue threshold and the aerobic workload. The proposed methodology demonstrates to be an accurate and reliable instrument for quantifying, for both slow and fast movements, the efficiency with which the athlete reaches the defined training targets and the precision achieved in developing an exercises’ routine. Furthermore, the dynamic response of the athlete is also measured by evaluating the position of the body during the workload as well as the speed of the movements and the corresponding interaction with the ground. This analysis verifies if an asymmetrical loading of the lower limbs and the power exerted during the impulsive contact phase with the ground. The measurements carried out during the analysis provide a map of the athlete performances during an entire season training and the mono- and bi-podalic movements could be associated with the time evolution of the athletic results, such as jumping length and height, speed, precision. Therefore, inefficiencies in the postural and technical aspects during the training can be measured and thus corrected leading to an improvement of the performance and to a reduction of the possibility for injuries onset.
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