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Development and Quantitative Performance Evaluation of a Noninvasive EMG Computer Interface

机译:无创肌电计算机接口的开发和定量性能评估

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This paper describes a noninvasive electromyography (EMG) signal-based computer interface and a performance evaluation method based on Fitts’ law. The EMG signals induced by volitional wrist movements were acquired from four sites in the lower arm to extract users’ intentions, and six classes of wrist movements were distinguished using an artificial neural network. Using the developed interface, a user can move the cursor, click buttons, and type text on a computer. The test setup was built to evaluate the developed interface, and the mouse was tested by five volunteers with intact limbs. The performance of the developed computer interface and the mouse was tested at 1.299 and 7.733 b/s, respectively, and these results were compared with the performance of a commercial noninvasive brain signal interface (0.386 b/s). The results show that the developed interface performed better than the commercial interface, but less satisfactorily than a computer mouse. Although some issues remain to be resolved, the developed EMG interface has the potential to help people with motor disabilities to access computers and Internet environments in a natural and intuitive manner.
机译:本文介绍了一种基于无创肌电图(EMG)信号的计算机界面以及一种基于Fitts定律的性能评估方法。从下臂的四个位置获取了由腕部自愿运动引起的EMG信号,以提取用户的意图,并使用人工神经网络区分了六类腕部运动。使用开发的界面,用户可以移动光标,单击按钮并在计算机上键入文本。建立了测试设置以评估开发的界面,并由五名肢体完整的志愿者测试了鼠标。分别在1.299和7.733 b / s下测试了开发的计算机接口和鼠标的性能,并将这些结果与商用无创性脑信号接口(0.386 b / s)的性能进行了比较。结果表明,开发的界面性能优于商业界面,但不如计算机鼠标令人满意。尽管仍有一些问题有待解决,但发达的EMG界面有潜力帮助行动不便的人以自然和直观的方式访问计算机和Internet环境。

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