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首页> 外文期刊>Neural Systems and Rehabilitation Engineering, IEEE Transactions on >Closed-Loop Control of Myoelectric Prostheses With Electrotactile Feedback: Influence of Stimulation Artifact and Blanking
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Closed-Loop Control of Myoelectric Prostheses With Electrotactile Feedback: Influence of Stimulation Artifact and Blanking

机译:带电触觉反馈的肌电假体的闭环控制:刺激伪像和消隐的影响

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摘要

Electrocutaneous stimulation is a promising approach to provide sensory feedback to amputees, and thus close the loop in upper limb prosthetic systems. However, the stimulation introduces artifacts in the recorded electromyographic (EMG) signals, which may be detrimental for the control of myoelectric prostheses. In this study, artifact blanking with three data segmentation approaches was investigated as a simple method to restore the performance of pattern recognition in prosthesis control (eight motions) when EMG signals are corrupted by stimulation artifacts. The methods were tested over a range of stimulation conditions and using four feature sets, comprising both time and frequency domain features. The results demonstrated that when stimulation artifacts were present, the classification performance improved with blanking in all tested conditions. In some cases, the classification performance with blanking was at the level of the benchmark (artifact-free data). The greatest pulse duration and frequency that allowed a full performance recovery were 400 and 150 Hz, respectively. These results show that artifact blanking can be used as a practical solution to eliminate the negative influence of the stimulation artifact on EMG pattern classification in a broad range of conditions, thus allowing to close the loop in myoelectric prostheses using electrotactile feedback.
机译:电皮肤刺激是向截肢者提供感觉反馈并因此闭合上肢假体系统中的回路的一种有前途的方法。但是,刺激会在记录的肌电图(EMG)信号中引入伪影,这可能对控制肌电假体不利。在这项研究中,研究了使用三种数据分割方法进行伪影消隐的一种简单方法,当EMG信号被刺激伪影破坏时,该方法可以恢复假体控制(八种运动)中模式识别的性能。在一系列刺激条件下并使用包括时域和频域特征的四个特征集对方法进行了测试。结果表明,当存在刺激伪影时,分类性能在所有测试条件下均随消隐而提高。在某些情况下,带有消隐的分类性能达到基准水平(无伪像的数据)。允许完全恢复性能的最大脉冲持续时间和频率分别为400和150 Hz。这些结果表明,伪影消隐可以用作在广泛条件下消除刺激伪影对EMG模式分类的负面影响的实际解决方案,从而允许使用电触觉反馈闭合肌电假体的环路。

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