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Validity and reliability of a new method for measuring putting stroke kinematics using the TOMI system.

机译:使用TOMI系统测量推杆运动学的新方法的有效性和可靠性。

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摘要

The purpose of this study was to determine the validity and reliability of a new method for measuring three-dimensional (3D) putting stroke kinematics using the TOMI device. A putting robot and a high-speed camera were used to simultaneously collect data for the validity evaluation. The TOMI device, when used in conjunction with standard 3D coordinate data processing techniques, was found to be a valid and reliable method for measuring face angle, stroke path, putter speed, and impact spot at the moment of ball contact. The validity of the TOMI(R) measurement system was quantified using the 95% limits of agreement method for each aforementioned variable. The practical significance of each validity score was assessed by incorporating the maximum estimated measurement error into the stroke of the putting robot for 10 consecutive putts. All putts were executed from a distance of 4 m on a straight and flat synthetic putting surface. Since all putts were holed successfully, the measurement error for each variable was deemed to be negligible for the purposes of measuring putting stroke kinematics. The influence of key kinematic errors, at impact, on the outcome of a putt was also determined.
机译:这项研究的目的是确定使用TOMI设备测量三维(3D)推杆运动学的新方法的有效性和可靠性。使用推杆机器人和高速摄像头同时收集数据以进行有效性评估。当将TOMI设备与标准3D坐标数据处理技术结合使用时,被发现是一种有效且可靠的方法,用于测量球接触时的杆面角度,行程路径,推杆速度和冲击点。使用上述每个变量的一致性方法的95%限制,对TOMI(R)测量系统的有效性进行了量化。通过将最大估计测量误差并入推杆机器人连续10次推杆的行程中,评估每个有效性评分的实际意义。所有推杆均在平直的合成推杆表面上以4 m的距离进行。由于所有推杆均已成功打孔,因此对于测量推杆运动学而言,每个变量的测量误差均可以忽略不计。还确定了关键运动学误差在推杆上的影响。

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