School of Sport, Exercise, and Health Sciences, Loughborough University, Loughborough, UK.
Centre for Healthy Aging, Murdoch University, Perth, Australia.
Sports Biomech. 2024 Jun;23(6):695-708. doi: 10.1080/14763141.2021.1887343. Epub 2021 Mar 5.
The purpose of this study was to determine the agreement in peak ball speed measured using a radar gun and motion capture system then examine the influence of angular position. Peak ball speed was recorded with the radar gun in-line with the ball trajectory (0° offset) and at 5° offsets up to 35°. Agreement between devices was calculated at 0° and for grouped offset bins (0-5°, 10-15°, 20-25°, and 30-35°). At 0°, a strong correlation ( = 0.99) and intraclass correlation coefficient (.984) were observed with a systematic overestimation by the radar gun (1.7 ± 0.8 m/s). The residual speed between devices at the 30-35° offset was significantly different to both 0-5° ( < .001) and 10-15° ( < .001) offsets. The radar gun consistently overestimated peak ball speed up to a ~20° offset and thus can be positioned out of the line-of-throw to avoid obstructions.
本研究旨在确定使用雷达枪和运动捕捉系统测量的峰值球速的一致性,然后检验角位置的影响。峰值球速通过与球轨迹成一直线(0°偏置)的雷达枪进行记录(0°偏置),并在 5°至 35°的范围内进行 5°偏置的记录。在 0°时,两个设备之间的一致性通过系统高估的雷达枪进行计算( = 0.99)和组内相关系数(0.984)(1.7 ± 0.8 m/s)。在 30-35°偏置处,设备之间的剩余速度与 0-5°( < 0.001)和 10-15°( < 0.001)的偏置明显不同。雷达枪一致地高估了峰值球速,直到约 20°的偏置,因此可以将其定位在投掷线之外以避免障碍物。