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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Reproducibility and Repeatability of Five Different Technologies for Bar Velocity Measurement in Resistance Training
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Reproducibility and Repeatability of Five Different Technologies for Bar Velocity Measurement in Resistance Training

机译:用于抗性训练中的律速度测量五种不同技术的再现性和重复性

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This study aimed to analyze the agreement between five bar velocity monitoring devices, currently used in resistance training, to determine the most reliable device based on reproducibility (between-device agreement for a given trial) and repeatability (between-trial variation for each device). Seventeen resistance-trained men performed duplicate trials against seven increasing loads (20-30-40-50-60-70-80 kg) while obtaining mean, mean propulsive and peak velocity outcomes in the bench press, full squat and prone bench pull exercises. Measurements were simultaneously registered by two linear velocity transducers (LVT), two linear position transducers (LPT), two optoelectronic camera-based systems (OEC), two smartphone video-based systems (VBS) and one accelerometer (ACC). A comprehensive set of statistics for assessing reliability was used. Magnitude of errors was reported both in absolute (m s(-1)) and relative terms (%1RM), and included the smallest detectable change (SDC) and maximum errors (MaxError). LVT was the most reliable and sensitive device (SDC 0.02-0.06 m s(-1), MaxError 3.4-7.1% 1RM) and the preferred reference to compare with other technologies. OEC and LPT were the second-best alternatives (SDC 0.06-0.11 m s(-1)), always considering the particular margins of error for each exercise and velocity outcome. ACC and VBS are not recommended given their substantial errors and uncertainty of the measurements (SDC > 0.13 m s(-1)).
机译:本研究旨在分析目前用于阻力训练的五条速度监测设备之间的协议,以确定基于再现性的最可靠的设备(用于给定试验的设备之间的内容协议)和重复性(每个设备的试验变化) 。 17个抗性训练有素的男性对七个增加的负荷(20-30-40-50-60-70-70-70-70-70-70-70-70-70-70-70-70 -70 kg)进行了重复的试验,同时获得平均压板,平均推进和峰值速度结果,完整的蹲坐和俯卧的台面拉动练习。测量同时由两个线性速度传感器(LVT),两个线性位置传感器(LPT),两个基于光电相机的系统(OEC),两个基于智能手机视频的系统(VBS)和一个加速度计(ACC)。使用了用于评估可靠性的全面统计数据。在绝对(M s(-1))和相对术语(%1rm)中报告了误差幅度,并且包括最小的可检测变化(SDC)和最大误差(MAXERROR)。 LVT是最可靠和最敏感的装置(SDC 0.02-0.06 M S(-1),MaxError 3.4-7.1%1RM)和与其他技术相比的首选参考。 OEC和LPT是第二个最佳替代品(SDC 0.06-0.11 M S(-1)),始终考虑每个运动和速度结果的特定误差边缘。没有推荐ACC和VBS,因为它们的实质性误差和测量的不确定性(SDC> 0.13 M S(-1))。

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