Prakash Alok, Sharma Shiru, Sharma Neeraj
School of Biomedical Engineering, Indian Institute of Technology (BHU), Varanasi, 221005 India.
Biomed Eng Lett. 2019 Aug 26;9(4):467-479. doi: 10.1007/s13534-019-00130-y. eCollection 2019 Nov.
Myoelectric prosthesis requires a sensor that can reliably capture surface electromyography (sEMG) signal from amputees for its controlled operation. The main problems with the presently available EMG devices are their extremely high cost, large response time, noise susceptibility, less amplitude sensitivity, and larger size. This paper proposes a compact and affordable EMG sensor for the prosthetic application. The sensor consists of an electrode interface, signal conditioning unit, and power supply unit all encased in a single package. The performance of dry electrodes employed in the skin interface was compared with the conventional Ag/AgCl electrodes, and the results were found satisfactory. The envelope detection technique in the sensor based on the tuned RC parameters enables the generation of smooth, faster, and repeatable EMG envelope irrespective of signal strength and subject variability. The output performance of the developed sensor was compared with commercial EMG sensor regarding signal-to-noise ratio, sensitivity, and response time. To perform this, EMG data with both devices were recorded for 10 subjects (3 amputees and 7 healthy subjects). The results showed 1.4 times greater SNR values and 45% higher sensitivity of the developed sensor than the commercial EMG sensor. Also, the proposed sensor was 57% faster than the commercial sensor in producing the output response. The sEMG sensor was further tested on amputees to control the operation of a self-designed 3D printed prosthetic hand. With proportional control scheme, the myoelectric hand setup was able to provide quicker and delicate grasping of objects as per the strength of the EMG signal.
肌电假肢需要一个能够可靠地从截肢者身上采集表面肌电图(sEMG)信号以进行控制操作的传感器。当前可用的肌电设备的主要问题是成本极高、响应时间长、易受噪声影响、幅度灵敏度低以及尺寸较大。本文提出了一种用于假肢应用的紧凑且经济实惠的肌电传感器。该传感器由电极接口、信号调理单元和电源单元组成,所有这些都封装在一个单一的封装中。将皮肤接口中使用的干电极的性能与传统的Ag/AgCl电极进行了比较,结果令人满意。基于调谐RC参数的传感器中的包络检测技术能够生成平滑、快速且可重复的肌电包络,而与信号强度和个体差异无关。将所开发传感器的输出性能与商用肌电传感器在信噪比、灵敏度和响应时间方面进行了比较。为此,使用这两种设备为10名受试者(3名截肢者和7名健康受试者)记录了肌电数据。结果表明,所开发的传感器的信噪比数值比商用肌电传感器高1.4倍,灵敏度高45%。此外,所提出的传感器在产生输出响应方面比商用传感器快57%。该sEMG传感器在截肢者身上进一步进行了测试,以控制自行设计的3D打印假手的操作。采用比例控制方案,肌电手装置能够根据肌电信号的强度更快且更精细地抓取物体。