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Development of a Compact Wireless Laplacian Electrode Module for Electromyograms and Its Human Interface Applications

机译:用于肌电图的紧凑型无线拉普拉斯电极模块的开发及其人机界面应用

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摘要

In this study, we developed a compact wireless Laplacian electrode module for electromyograms (EMGs). One of the advantages of the Laplacian electrode configuration is that EMGs obtained with it are expected to be sensitive to the firing of the muscle directly beneath the measurement site. The performance of the developed electrode module was investigated in two human interface applications: character-input interface and detection of finger movement during finger Braille typing. In the former application, the electrode module was combined with an EMG-mouse click converter circuit. In the latter, four electrode modules were used for detection of finger movements during finger Braille typing. Investigation on the character-input interface indicated that characters could be input stably by contraction of (a) the masseter, (b) trapezius, (c) anterior tibialis and (d) flexor carpi ulnaris muscles. This wide applicability is desirable when the interface is applied to persons with physical disabilities because the disability differs one to another. The investigation also demonstrated that the electrode module can work properly without any skin preparation. Finger movement detection experiments showed that each finger movement was more clearly detectable when comparing to EMGs recorded with conventional electrodes, suggesting that the Laplacian electrode module is more suitable for detecting the timing of finger movement during typing. This could be because the Laplacian configuration enables us to record EMGs just beneath the electrode. These results demonstrate the advantages of the Laplacian electrode module.
机译:在这项研究中,我们开发了一种用于肌电图(EMG)的紧凑型无线拉普拉斯电极模块。拉普拉斯电极结构的优点之一是,预期由此获得的EMG对测量部位正下方的肌肉放电敏感。在两个人机界面应用程序中研究了开发的电极模块的性能:字符输入界面和在手指盲文打字过程中检测手指运动。在以前的应用中,电极模块与EMG鼠标点击转换器电路结合在一起。在后者中,使用四个电极模块检测手指盲文打字过程中的手指运动。对字符输入界面的研究表明,可以通过(a)咬肌,(b)斜方肌,(c)胫骨前胫骨和(d)尺屈腕腕肌肉的收缩来稳定地输入字符。当将接口应用于身体残疾的人时,这种广泛的适用性是理想的,因为残疾彼此不同。调查还表明,无需任何皮肤准备即可使电极模块正常工作。手指运动检测实验表明,与传统电极记录的EMG相比,每个手指运动都更清晰地可检测到,这表明拉普拉斯电极模块更适合于检测打字过程中手指运动的时机。这可能是因为拉普拉斯式配置使我们能够记录电极下方的EMG。这些结果证明了拉普拉斯电极模块的优势。

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