Low-cost wearable multichannel surface EMG acquisition for prosthetic hand control

D. Brunelli, A. Tadesse, B. Vodermayer, Markus Nowak, Claudio Castellini
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引用次数: 54

Abstract

Prosthetic hand control based on the acquisition and processing of surface electromyography signals (sEMG) is a well-established method that makes use of the electric potentials evoked by the physiological contraction processes of one or more muscles. Furthermore intelligent mobile medical devices are on the brink of introducing safe and highly sophisticated systems to help a broad patient community to regain a considerable amount of life quality. The major challenges which are inherent in such integrated system's design are mainly to be found in obtaining a compact system with a long mobile autonomy, capable of delivering the required signal requirements for EMG based prosthetic control with up to 32 simultaneous acquisition channels and - with an eye on a possible future exploitation as a medical device - a proper perspective on a low priced system. Therefore, according to these requirements we present a wireless, mobile platform for acquisition and communication of sEMG signals embedded into a complete mobile control system structure. This environment further includes a portable device such as a laptop providing the necessary computational power for the control and a commercially available robotic hand-prosthesis. Means of communication among those devices are based on the Bluetooth standard. We show, that the developed low cost mobile device can be used for proper prosthesis control and that the device can rely on a continuous operation for the usual daily life usage of a patient.
低成本可穿戴多通道表面肌电信号采集假肢手控制
基于表面肌电信号(sEMG)的获取和处理的假手控制是一种成熟的方法,它利用了一个或多个肌肉的生理收缩过程所引起的电位。此外,智能移动医疗设备即将引入安全和高度复杂的系统,以帮助广大患者群体重新获得相当数量的生活质量。这种集成系统设计中固有的主要挑战主要在于获得一个具有长时间移动自主性的紧凑系统,能够提供基于肌电图的假肢控制所需的信号,最多可同时获取32个通道,并且-着眼于未来可能作为医疗设备的开发-对低价系统的适当看法。因此,根据这些要求,我们提出了一个无线、移动平台,用于采集和通信的表面肌电信号嵌入到一个完整的移动控制系统结构。该环境还包括便携式设备,如笔记本电脑,为控制提供必要的计算能力,以及商用机器人假肢。这些设备之间的通信方式基于蓝牙标准。我们表明,开发的低成本移动设备可以用于适当的假肢控制,并且该设备可以依靠连续的操作来满足患者的日常生活使用。
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