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EMG-Based Validation of Musculoskeletal Models Considering Crosstalk

机译:考虑串扰的基于肌电图的肌肉骨骼模型验证

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BACKGROUND: Validation and verification of multibody musculoskeletal models sEMG is a difficult process because of the reliability of sEMG data and the complex relationship of muscle force and sEMG. OBJECTIVE: This work aims at comparing experimentally recorded and simulated muscle activities considering a numerical model for crosstalk. METHODS: For providing an experimentally derived reference data set, subjects were performing elevations of the arm, where the activities of the contemplated muscle groups were measured by sEMG sensors. Computed muscle activities were further processed and transformed into an artificial electromyographical signal, which includes a numerical crosstalk model. In order to determine whether the crosstalk model provides a better agreement with the measured muscle activities, the Pearson correlation coefficient has been computed as a qualitative way of assessing the curve progression of the data sets. RESULTS: The results show an improvement in the correlation coefficient between the experimental data and the simulated muscle activities when taking crosstalk into account. CONCLUSIONS: Although the correlation coefficient increased when the crosstalk model was utilized, it is questionable if the discretization of both, the crosstalk and the musculoskeletal model, is accurate enough.
机译:背景:由于sEMG数据的可靠性以及肌肉力量和sEMG的复杂关系,因此多体肌肉骨骼模型sEMG的验证和验证是一个困难的过程。目的:这项工作旨在通过考虑串扰的数值模型来比较实验记录和模拟的肌肉活动。方法:为了提供实验得出的参考数据集,受试者正在抬高手臂,其中通过sEMG传感器测量了预期的肌肉群的活动。计算出的肌肉活动被进一步处理并转化为人工肌电信号,其中包括数字串扰模型。为了确定串扰模型是否与测得的肌肉活动更好地吻合,已将皮尔逊相关系数作为评估数据集曲线进展的定性方法进行了计算。结果:结果表明,在考虑串扰的情况下,实验数据与模拟肌肉活动之间的相关系数有所改善。结论:尽管使用串扰模型时相关系数增加,但是串扰和肌肉骨骼模型两者的离散化是否足够准确值得怀疑。

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