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最大冲刺中的阶段分析:对初始加速、过渡和最大速度阶段之间的逐步技术变化的研究。

Phase analysis in maximal sprinting: an investigation of step-to-step technical changes between the initial acceleration, transition and maximal velocity phases.

机构信息

Cardiff School of Sport and Health Sciences, Cardiff Metropolitan University, Cardiff, UK.

Applied Sports, Technology, Exercise and Medicine Research Centre, Swansea University, Swansea, UK.

出版信息

Sports Biomech. 2020 Apr;19(2):141-156. doi: 10.1080/14763141.2018.1473479. Epub 2018 Jul 4.

Abstract

The aim of this study was to investigate spatiotemporal and kinematic changes between the initial acceleration, transition and maximum velocity phases of a sprint. Sagittal plane kinematics from five experienced sprinters performing 50-m maximal sprints were collected using six HD-video cameras. Following manual digitising, spatiotemporal and kinematic variables at touchdown and toe-off were calculated. The start and end of the transition phase were identified using the step-to-step changes in centre of mass height and segment angles. Mean step-to-step changes of spatiotemporal and kinematic variables during each phase were calculated. Firstly, the study showed that if sufficient trials are available, step-to-step changes in shank and trunk angles might provide an appropriate measure to detect sprint phases in applied settings. However, given that changes in centre of mass height represent a more holistic measure, this was used to sub-divide the sprints into separate phases. Secondly, during the initial acceleration phase large step-to-step changes in touchdown kinematics were observed compared to the transition phase. At toe-off, step-to-step kinematic changes were consistent across the initial acceleration and transition phases before plateauing during the maximal velocity phase. These results provide coaches and practitioners with valuable insights into key differences between phases in maximal sprinting.

摘要

本研究旨在探讨短跑起跑、过渡和最大速度阶段的时空和运动学变化。使用六台高清摄像机收集了五名经验丰富的短跑运动员进行 50 米最大冲刺的矢状面运动学数据。经过手动数字化处理,计算了触地和离地时的时空和运动学变量。使用质心高度和节段角度的逐步变化来确定过渡阶段的开始和结束。计算了每个阶段时空和运动学变量的平均逐步变化。首先,研究表明,如果有足够的试验可用,小腿和躯干角度的逐步变化可能是一种在应用环境中检测短跑阶段的合适方法。然而,鉴于质心高度的变化代表了更全面的测量方法,因此将其用于将短跑划分为不同的阶段。其次,在初始加速阶段,与过渡阶段相比,触地动力学的逐步变化较大。在离地时,初始加速和过渡阶段的逐步运动学变化一致,然后在最大速度阶段趋于平稳。这些结果为教练和从业者提供了有价值的见解,了解最大冲刺阶段之间的关键差异。

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