首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >Validity of an inertial device for measuring linear and angular velocity in a leg extension exercise
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Validity of an inertial device for measuring linear and angular velocity in a leg extension exercise

机译:用于测量腿部延伸运动中线性和角速度的惯性装置的有效性

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Traditionally, linear transducers have been used to evaluate resistance exercise with linear displacement. The current problem is the assessment of exercises with curvilinear displacement. For this reason, new devices should be assessed during training sessions. The purpose was to evaluate (1) the concurrent validity of mean linear velocity and (2) the convergent validity of mean angular velocity measured by an inertial device during a leg extension exercise. Ten elite-level football players completed six series of five repetitions of a leg extension exercise. WIMU PRO (TM) inertial device and GymAware (R) linear transducers as criterion measure were used to register data. To assess concurrent validity, the bias of the inertial device measures of velocity was analyzed with Bland-Altman plots with limits of agreement set at 95%. Convergent validity of inertial device measures of velocity was assessed with Pearson's correlation analysis. Concurrent analysis showed a nearly perfect validity between linear transducers and inertial device in linear (Bias = -0.011 +/- 0.006) and angular velocity (-0.34 +/- 2.08). A nearly perfect Pearson's product-moment correlation coefficient between an inertial device and linear transducers in linear velocity (r = 0.999) and between an inertial device and linear transducers (calculated) in angular velocity (r = 0.999) was found. In conclusion, WIMU PRO is valid for measuring linear and angular velocity during two-dimensional linear and rotational motions of exercise equipment. This device can be used as a useful tool to assess movement velocity in resistance training exercises, even in curvilinear movements when linear transducers have obvious limitations.
机译:传统上,线性传感器已被用于评估用线性位移的电阻运动。目前的问题是评估曲线位移的练习。因此,应在培训会议期间进行新设备。目的是评估(1)平均线性速度的并发有效性,(2)在腿部延伸运动期间由惯性装置测量的平均角速度的会聚有效性。十个精英级的足球运动员完成了六次延长术术的五次重复。 WiMu Pro(TM)惯性装置和体质换档(R)线性换能器作为标准测量用于注册数据。为了评估并发有效性,分析了惯性装置的速度衡量标准的偏差,并用平坦的altman地块分析了一项协议限制的平局。利用Pearson的相关分析评估了惯性装置速度措施的收敛有效性。并发分析显示了线性换能器和线性惯性装置之间的几乎完美的有效性(BIAS = -0.011 +/- 0.006)和角速度(-0.34 +/- 2.08)。发现了惯性装置和线性换能器之间的近乎完美的Pearson在线性速度(R = 0.999)之间的产品矩相关系数,并且在角速度(R = 0.999)中发现惯性装置和线性换能器(计算出)。总之,Wimu Pro用于测量运动设备的二维线性和旋转运动期间测量线性和角速度。该装置可以用作评估电阻训练锻炼的运动速度的有用工具,即使线性传感器具有明显的限制时,即使在曲线运动中也是如此。

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