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A novel biomedical application for the Myo gesture control armband

机译:Myo手势控制臂带的新型生物医学应用

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The Myo gesture control armband, by Thalmic Labs, allows taking control of several digital technologies from a distance. The Myo uses Electromyography (EMG) sensors to read electrical activity in muscles. Departing from this fact, in this paper we focus on the Myo as a biomedical equipment that could be used for medical purposes. Limited contribution has been made by Myo developers in this area. To prove this, we used the Myo armband to continuously flip slides of a PowerPoint presentation using two arm data-sets; 6 normal arms and 1 injured arm. The energy and rms performances of the normal and injured arms were compared at the first 10 seconds and after 40 and 80 seconds. For the normal arms flipping the presentation, the energy and rms values remained nearly the same (for the energy; 23 dB at 10s to 21 dB at 80s and for rms; 16 dB at 10s to 14.5 dB at 80s). However, for the injured arm the performance deteriorated as time elapsed (for the energy; 22 dB at 10s to 15 dB at 80s and for rms; 15 dB at 10s to 10.5 dB at 80s), as a result that the injured muscles were getting tired and their electrical activity was reduced.
机译:Thalmic Labs的Myo手势控制臂环可让您从远处控制多种数字技术。 Myo使用肌电图(EMG)传感器读取肌肉中的电活动。脱离这一事实,在本文中,我们将重点放在Myo作为可用于医疗目的的生物医学设备上。 Myo开发人员在这方面的贡献有限。为了证明这一点,我们使用Myo臂章通过两个臂数据集来连续翻转PowerPoint演示文稿的幻灯片。正常手臂6条,受伤手臂1条。在开始的10秒,40秒和80秒后比较了正常手臂和受伤手臂的能量和均方根值。对于正常的手臂翻转演示,能量和均方根值几乎保持不变(对于能量;在80s时10s到21 dB时为23 dB,在rms时为80s时10s到14.5 dB时为16 dB)。但是,随着时间的流逝,受伤的手臂的性能会下降(对于能量; 80s时在10s到15 dB时为22 dB,有效值在10s时为15 dB; 80s时为10.5 dB时为15 dB),结果是受伤的肌肉累了,他们的电活动减少了。

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