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首页> 外文期刊>The Journal of Experimental Biology >Combining forces and kinematics for calculating consistent centre of mass trajectories
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Combining forces and kinematics for calculating consistent centre of mass trajectories

机译:结合力和运动学来计算一致的质心轨迹

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摘要

The motion of centre of mass (CoM) is a fundamental object of investigation in biomechanical analysis. In principle, the CoM motion can either be calculated from force data (dynamic method) or motion capture data (kinematic method). In both approaches, the accuracy of the calculated trajectories depends on the quality of the original signals. Interestingly, the inaccuracies in each method are related to different parts of the Fourier spectrum. Here, we present a new approach to compute CoM motion based on the reliable frequency range of force and kinematic measurements. As a result we obtain physically consistent CoM and force signals, i.e. the second derivative of the CoM trajectory equals the force. The algorithm is verified on simulation data and applied to selected experimental data. We show that the new algorithm can eliminate typical inaccuracies inherent in kinematic and force signals. Also, we discuss the biological and technical origins of these findings.
机译:质心运动(CoM)是生物力学分析研究的基本对象。原则上,CoM运动可以从力数据(动态方法)或运动捕获数据(运动学方法)中计算出来。在两种方法中,计算轨迹的准确性都取决于原始信号的质量。有趣的是,每种方法的不准确性与傅立叶谱的不同部分有关。在这里,我们提出了一种基于力和运动学测量的可靠频率范围来计算CoM运动的新方法。结果,我们获得了物理上一致的CoM和力信号,即CoM轨迹的二阶导数等于力。该算法在仿真数据上得到验证,并应用于选定的实验数据。我们表明,新算法可以消除运动和力信号中固有的典型误差。此外,我们讨论了这些发现的生物学和技术起源。

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