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一种用于假手应用的光电肌肉收缩传感器。

An optoelectronic muscle contraction sensor for prosthetic hand application.

作者信息

Sharma Neeraj, Prakash Alok, Sharma Shiru

机构信息

School of Biomedical Engineering, Indian Institute of Technology (BHU), Varanasi 221005, India.

CSIR-National Physical Laboratory, New Delhi 110012, India.

出版信息

Rev Sci Instrum. 2023 Mar 1;94(3):035009. doi: 10.1063/5.0130394.

Abstract

Surface electromyography (sEMG) is considered an established means for controlling prosthetic devices. sEMG suffers from serious issues such as electrical noise, motion artifact, complex acquisition circuitry, and high measuring costs because of which other techniques have gained attention. This work presents a new optoelectronic muscle (OM) sensor setup as an alternative to the EMG sensor for precise measurement of muscle activity. The sensor integrates a near-infrared light-emitting diode and phototransistor pair along with the suitable driver circuitry. The sensor measures skin surface displacement (that occurs during muscle contraction) by detecting backscattered infrared light from skeletal muscle tissue. With an appropriate signal processing scheme, the sensor was able to produce a 0-5 V output proportional to the muscular contraction. The developed sensor depicted decent static and dynamic features. In detecting muscle contractions from the forearm muscles of subjects, the sensor showed good similarity with the EMG sensor. In addition, the sensor displayed higher signal-to-noise ratio values and better signal stability than the EMG sensor. Furthermore, the OM sensor setup was utilized to control the rotation of the servomotor using an appropriate control scheme. Hence, the developed sensing system can measure muscle contraction information for controlling assistive devices.

摘要

表面肌电图(sEMG)被认为是控制假肢装置的一种成熟方法。由于存在电噪声、运动伪影、复杂的采集电路和高昂的测量成本等严重问题,sEMG受到影响,其他技术因此受到关注。这项工作提出了一种新型光电肌肉(OM)传感器装置,作为肌电图传感器的替代方案,用于精确测量肌肉活动。该传感器集成了一个近红外发光二极管和光电晶体管对以及合适的驱动电路。该传感器通过检测来自骨骼肌组织的后向散射红外光来测量皮肤表面位移(在肌肉收缩期间发生)。通过适当的信号处理方案,该传感器能够产生与肌肉收缩成比例的0 - 5V输出。所开发的传感器具有良好的静态和动态特性。在检测受试者前臂肌肉的肌肉收缩时,该传感器与肌电图传感器表现出良好的相似性。此外,该传感器显示出比肌电图传感器更高的信噪比和更好的信号稳定性。此外,利用OM传感器装置通过适当的控制方案来控制伺服电机的旋转。因此,所开发的传感系统可以测量肌肉收缩信息以控制辅助装置。

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