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Numerical Approach to Processing of Biomechanical Experimental Results

机译:生物力学实验结果处理的数值方法

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The aim is to analyse the possibilities to approximate the data of biomechanical experiments using analytical functions, and to calculate parameters of human limb movement that are of interest to researchers, such as the maximum torque, motion duration, the time taken to achieve maximum torque, motion speed changes during the extension and flexion of limb. The Biodex 3 System Pro was used to collect the experimental data. Right leg extension motion parameters were measured 10 times. The experiment lasted three days, with 1-hour break to rest between tests. The foot extension parameters were: maximum torque 104.38 +/- 2.18 Nm, the time to peak torque 436 +/- 2.6 ms, motion duration 1000 +/- 2.5 ms. The torque values were measured using monitor. It was shown that it is appropriate to use the sixth-order polynomial to approximate the torque versus time curve. Polynomial coefficients with no less 16 significant digits should be used in calculations. Experimental and computational data are presented.
机译:目的是分析使用解析函数逼近生物力学实验数据的可能性,并计算研究人员感兴趣的人体四肢运动参数,例如最大扭矩,运动持续时间,达到最大扭矩所需的时间,运动速度在肢体伸展和弯曲期间发生变化。 Biodex 3 System Pro用于收集实验数据。测量右腿伸展运动参数10次。实验持续了三天,两次测试之间休息了1个小时。脚部伸展参数为:最大扭矩104.38 +/- 2.18 Nm,达到峰值扭矩的时间436 +/- 2.6 ms,运动持续时间1000 +/- 2.5 ms。使用监视器测量扭矩值。结果表明,使用六阶多项式来近似转矩对时间曲线是合适的。计算中应使用不少于16个有效数字的多项式系数。介绍了实验和计算数据。

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