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首页> 外文期刊>Biomedical signal processing and control >Linear regression with frequency division technique for robust simultaneous and proportional myoelectric control during medium and high contraction-level variation
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Linear regression with frequency division technique for robust simultaneous and proportional myoelectric control during medium and high contraction-level variation

机译:具有频率分割技术的线性回归,用于中高收缩水平变化期间鲁棒同时和比例肌电控制

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Myoelectric controlled prostheses systems have evolved significantly over the last few decades, however, there remains a need for more robust systems. Clinically, prosthesis control schemes must be robust to various Electromyography (EMG) signal non-stationarities such as unintended activations and contraction level variations to ensure appropriate operation of the prosthesis. This study compared performance measures between two control schemes, linear regression with frequency division technique (LR-FDT) and standard bandpass processing (LR-Bandpass) for two contraction levels (medium and high) to investigate robustness to EMG non-stationarities. Twenty able-bodied control (14 males and 6 females, age 23.4 +/- 3.0) and four individuals with trans-radial amputations performed wrist movements (flexion/extension, rotations and combined movements) in two degrees-of-freedom (DOF) virtual tasks. For control participants, LR-FDT had a mean completion rate (CR) of 95.33%, which was significantly higher than LR-Bandpass with a CR of 64.08% (p0.001). The clinical participants showed a CR90% using LR-FDT and had an average CR of 69.8% using LR-Bandpass. LR-FDT method performed significantly better in all other performance indices in at least one movement type. There was no significant difference in the performance of LR-FDT between medium and high contraction levels. This study showed that LR-FDT is advantageous in online myoelectric control as it introduces a more accurate, robust and contraction level invariant control scheme for performing prosthetic hand movements. This study is the first to use frequency-based features with a simultaneous and proportional myoelectric control (SPEC) scheme. (C) 2020 Published by Elsevier Ltd.
机译:在过去的几十年中,肌电控制假体系已经显着发展,但是,仍然需要更强大的系统。临床上,假体控制方案必须对各种肌电图(EMG)信号非公平性(如意想不到的激活和收缩水平变化)鲁棒,以确保假体适当运行。这项研究比较了两个控制方案之间的性能测量,用频分技术(LR-FDT)和标准带通处理(LR-BANDSPASS)进行了两个收缩水平(中等和高)来调查对EMG非平衡性的鲁棒性的标准带通处理(LR-BANDSPASS)。二十个能够体育的控制(14名男性和6名女性,23.4 +/- 3.0)和四个具有跨径向截肢的个人,在两种自由度(DOF)中进行了手腕运动(屈曲/延伸,旋转和组合运动)虚拟任务。对于对照参与者,LR-FDT的平均完井率(Cr)为95.33%,其明显高于LR-带通,Cr为64.08%(P <0.001)。临床参与者使用LR-FDT显示CR> 90%,使用LR-BANDAX通道的平均CR为69.8%。 LR-FDT方法在至少一种运动类型中的所有其他性能指标中进行明显更好。中高收缩水平的LR-FDT性能没有显着差异。该研究表明,LR-FDT在在线肌电控制中是有利的,因为它引入了更准确,鲁棒和收缩水平不变的控制方案,用于执行假肢运动。本研究是第一个使用基于频率的特征,具有同时和比例的肌电控制(规格)方案。 (c)2020由elestvier有限公司发布

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