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首页> 外文期刊>Journal of Sports Science and Medicine >The Biomechanics of Standing Start and Initial Acceleration: Reliability of the Key Determining Kinematics
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The Biomechanics of Standing Start and Initial Acceleration: Reliability of the Key Determining Kinematics

机译:站立和初始加速的生物力学:确定运动学的关键的可靠性

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The reliability of the key determining kinematic variables associated with short sprint performance provide insight into how and why movement may vary between individual trials. Currently, literature surrounding these determinants is scarce when investigating the first three strides of a sprint. The purpose of this study was to investigate the reliability of sprint acceleration and the key kinematic determinants involved during the first three steps of the movement. The aim was to use a practical method of kinematic analysis to help explain why changes may occur in sprint performance via the use of correlative statistics and to provide reference values for intervention research to make conclusions about their change scores. Ten male volunteers from various team sports attended two separate testing sessions, a minimum of 48 hours apart. They performed three maximal sprint trials over a 10m distance from a standing start, where researchers captured 5m and 10m sprint times alongside high speed camera footage, from which the key kinematic variables were measured. Results demonstrated that although 5m and 10m sprint times depicted moderate to large levels of similarity between sessions, neither of these variables met the criteria to be classified as adequately, or highly reliable. Kinematic measures typically produced ICC values > 0.70 and CV% < 10%, demonstrating all relevant statistical traits to be categorised as reliable measures. Step frequency and flight time during the third step showed the largest correlation with performance, exhibiting ‘r’ values of -0.386 and 0.396, respectively. These findings demonstrate that kinematic variables may not have an influential role with sprint times; therefore suggesting kinetic concepts may in fact be the key determinants of speed. Future research is required investigating the interaction of kinetic and kinematic variables associated with sprinting and how the variability in these concepts effects the reliability of performance.
机译:与短距离冲刺表现相关的关键运动学变量的可靠性提供了关于各个试验之间运动如何以及为何变化的见解。当前,在调查冲刺的前三个步幅时,围绕这些决定因素的文献很少。这项研究的目的是调查冲刺加速的可靠性以及在运动的前三个步骤中涉及的关键运动学决定因素。目的是使用一种运动学分析的实用方法,以帮助解释为什么通过使用相关统计数据可能会导致冲刺性能发生变化,并为干预研究提供参考值,以得出有关其变化得分的结论。来自各种团体运动的十名男性志愿者分别参加了两次测试,每场至少间隔48小时。他们从站立开始10m的距离内进行了三个最大的冲刺试验,研究人员在高速相机镜头的同时捕获了5m和10m的冲刺时间,从中可以测量关键的运动学变量。结果表明,尽管5m和10m的冲刺时间描述了会话之间的相似度到较大程度的相似性,但是这些变量均不符合被归类为充分或高度可靠的标准。运动学指标通常产生的ICC值> 0.70,CV%<10%,表明所有相关统计特征均被归类为可靠指标。第三步的步频和飞行时间与性能之间具有最大的相关性,其“ r”值分别为-0.386和0.396。这些发现表明运动学变量可能不会对冲刺时间产生影响。因此,提出动力学概念实际上可能是速度的关键决定因素。需要进行进一步的研究,以研究与短跑相关的动力学和运动学变量之间的相互作用,以及这些概念的可变性如何影响性能的可靠性。

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