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Measurement error in estimates of sprint velocity from a laser displacement measurement device

机译:来自激光位移测量设备的冲刺速度估算中的测量误差

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摘要

This study aimed to determine the measurement error associated with estimates of velocity from a laser-based device during different phases of a maximal athletic sprint. Laser-based displacement data were obtained from 10 sprinters completing a total of 89 sprints and were fitted with a fifth-order polynomial function which was differentiated to obtain instantaneous velocity data. These velocity estimates were compared against criterion high-speed video velocities at either 1, 5, 10, 30 or 50 m using a Bland-Altman analysis to assess bias and random error. Bias was highest at 1 m (+ 0.41 m/s) and tended to decrease as the measurement distance increased, with values less than + 0.10 m/s at 30 and 50 m. Random error was more consistent between distances, and reached a minimum value (±0.11 m/s) at 10 m. Laser devices offer a potentially useful time-efficient tool for assessing between-subject or between-session performance from the mid-acceleration and maximum velocity phases (i. e., at 10 m and beyond), although only differences exceeding 0.22-0.30 m/s should be considered genuine. However, laser data should not be used during the first 5 m of a sprint, and are likely of limited use for assessing within-subject variation in performance during a single session.
机译:这项研究旨在确定与最大运动冲刺不同阶段中基于激光的设备的速度估计值相关的测量误差。从10个短跑运动员获得了基于激光的位移数据,总共完成了89个短跑,并配备了五阶多项式函数,将其微分以获得瞬时速度数据。使用Bland-Altman分析来评估偏差和随机误差,将这些速度估计值与标准高速视频速度在1、5、10、30或50 m处进行比较。偏差在1 m(+ 0.41 m / s)时最高,并且随着测量距离的增加而趋于减小,在30和50 m时偏差小于+ 0.10 m / s。距离之间的随机误差更加一致,并且在10 m处达到最小值(±0.11 m / s)。激光设备提供了一种潜在有用的省时工具,用于从中加速阶段和最大速度阶段(即,在10 m及以上)评估对象之间或会话之间的性能,尽管仅应使差异超过0.22-0.30 m / s被认为是货真价实的。但是,在冲刺的前5 m内不应使用激光数据,并且激光数据可能在评估单个会话中受试者内部性能变化时用途有限。

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