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A new approach for multi-channel surface EMG signal simulation

机译:多通道表面EMG信号仿真的一种新方法

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Simulation models are necessary for testing the performance of newly developed approaches before they can be applied to interpreting experimental data, especially when biomedical signals such as surface electromyogram (SEMG) signals are involved. A new and easily implementable surface EMG simulation model was developed in this study to simulate multi-channel SEMG signals. A single fiber action potential (SFAP) is represented by the sum of three Gaussian functions. SFAP waveforms can be modified by adjusting the amplitude and bandwidth of the Gaussian functions. SEMG signals were successfully simulated at different detected locations. Effects of the fiber depth, electrode position and conduction velocity of SFAP on motor unit action potential (MUAP) were illustrated. Results demonstrate that the easily implementable SEMG simulation approach developed in this study can be used to effectively simulate SEMG signals.
机译:在应用于解释实验数据之前,仿真模型是测试新开发方法的性能,尤其是当涉及诸如表面电谱(SEMG)信号的生物医学信号时。 本研究开发了一种新的且易于可实现的表面EMG仿真模型,以模拟多通道SEMG信号。 单光纤动作电位(SFAP)由三个高斯函数的总和表示。 可以通过调整高斯函数的幅度和带宽来修改SFAP波形。 在不同检测到的位置成功模拟SEMG信号。 SFAP对电机单元动作电位(MUAP)的纤维深度,电极位置和传导速度的影响。 结果表明,本研究开发的易于实现的SEMG模拟方法可用于有效模拟SEMG信号。

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