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A Multi-Modal Approach for Hand Motion Classification Using Surface EMG and Accelerometers

机译:利用表面肌电和加速度计进行手部运动分类的多模态方法

摘要

For decades, electromyography (EMG) has been used for diagnostics, upper-limb prosthesis control, and recently even for more general human-machine interfaces. Current commercial upper limb prostheses usually have only two electrode sites due to cost and space limitations, while researchers often experiment with multiple sites. Micro-machined inertial sensors are gaining popularity in many commercial and research applications where knowledge of the postures and movements of the body is desired. In the present study, we have investigated whether accelerometers, which are relatively cheap, small, robust to noise, and easily integrated in a prosthetic socket; can reduce the need for adding more electrode sites to the prosthesis control system. This was done by adding accelerometers to a multifunction system and also to a simplified system more similar to current commercially available prosthesis controllers, and assessing the resulting changes in classification accuracy. The accelerometer does not provide information on muscle force like EMG electrodes, but the results show that it provides useful supplementary information. Specifically, if one wants to improve a two-site EMG system, one should add an accelerometer affixed to the forearm rather than a third electrode.
机译:几十年来,肌电图(EMG)已用于诊断,上肢假体控制,最近甚至用于更通用的人机界面。由于成本和空间的限制,目前的商用上肢假体通常只有两个电极部位,而研究人员经常在多个部位进行实验。在需要了解人体姿势和运动的许多商业和研究应用中,微机械惯性传感器正变得越来越流行。在本研究中,我们调查了加速度计是否相对便宜,体积小,抗噪声能力强并且易于集成在假牙插座中;可以减少向假体控制系统添加更多电极部位的需要。这是通过将加速度计添加到多功能系统以及简化的系统(与目前市售的假体控制器更相似)并评估最终的分类精度变化来完成的。加速度计不像EMG电极那样提供有关肌肉力量的信息,但结果表明它提供了有用的补充信息。具体来说,如果要改善两点肌电图系统,则应在前臂上增加一个加速度计,而不要增加第三个电极。

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