基于双阈值法的轮椅肌电信号收缩检测的研制

IF 0.5 Q4 ENGINEERING, BIOMEDICAL
Endro Yulianto, Heru Wildan Muzakkir, Triwiyanto Triwiyanto, P. C. Nugraha, Moch P. Prastawa, Lamidi
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引用次数: 0

摘要

脊髓损伤(SCI)的后果是身体某些部位的功能障碍。这一观察结果尤其适用于颈部创伤,因为患者的手和腿都不再起作用。本研究的目的是确定电动轮椅中比较支架系统对瘫痪患者的作用机制。这项研究的贡献是获得了一种支架机制,可以使轮椅平稳运行,而不受使用者不稳定肌肉收缩强度的影响。要设置肌肉参考值,请使用USB电缆将发射器连接到Android。在Android上有两种设置模式,即手动和自动设置。在自动模式中使用的方法是,变送器将获得100个收缩和100个松弛数据,并乘以某些常数,以获得上限和下限阈值。在手动设置阈值时,该值是根据Android上手动显示的患者收缩强度设置的。其中,在阈值设置中,手动获得93.3%的向前移动、100%的向左移动、100%向右移动和93.3%的向后移动的响应。同时,阈值设置自动获得80%的前向运动响应,93.3%的左转向运动响应,86.6%的右转向运动响应和93.3%的后向运动响应。敲击肌肉的4个部分的结果可以用来检测肌肉收缩,这样轮椅就可以根据命令移动。这项研究中得出的问题是,脸上有很多敲击点,干扰了在脸上安装电极的舒适性和时间,而且安卓系统上的患者肌肉参考设置系统仍然需要其他人的帮助。未来,它有望减少敲击点,提高肌肉阈值设置的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Electromyography Signal Contraction Detection Using the Double Threshold Method for Controlling Wheelchair
The consequence of spinal cord injury (SCI) is the malfunction of some parts of the body. This observation especially applies to trauma at the cervical level, because both patients' hands and legs are no longer functioning. The purpose of this study was to determine the mechanism of the comparator treshold system in electric wheelchairs for patients with paralysis. The research contribution is to get a treshold mechanism that can make a wheelchair run smoothly without being affected by the strength of the user's unstable muscle contractions. To set the muscle reference value, connect the transmitter to Android using USB Cable. On Android there are 2 settings modes, namely manual and auto settings. The method used in auto mode is the transmitter will take 100 contraction and 100 relaxation data and multiplied by certain constants to get the upper and lower threshold values. In setting the threshold manually, the value is set based on the strength of the patient's contractions that are displayed on Android manually. Where in the threshold setting manually obtained response 93.3% of forward movement, 100% of turn left movement, 100% of turn right movement and 93.3% of backward movement. Meanwhile, the threshold setting automatically gets 80% response for forward movements, 93.3% for turn left movements, 86.6% for turn right movements and 93.3% for backward movements. The results of the tapping into 4 parts of the muscle can be implemented to detect muscle contractions so that the wheelchair can move according to orders. The problem obtained in this study is that there are many tapping points on the face so that it interferes with the comfort and time of installing electrodes on the face, also the patient's muscle reference setting system on Android still needs the help of others. In the future, it is expected to reduce tapping points and improve the efficiency of muscle threshold settings.
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来源期刊
CiteScore
1.40
自引率
14.30%
发文量
73
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