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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Differentiating Variations in Thumb Position From Recordings of the Surface Electromyogram in Adults Performing Static Grips, a Proof of Concept Study
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Differentiating Variations in Thumb Position From Recordings of the Surface Electromyogram in Adults Performing Static Grips, a Proof of Concept Study

机译:从成年人进行静态握力的表面肌电图记录区分拇指位置变化的概念验证

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Hand gesture and grip formations are produced by the muscle synergies arising between extrinsic and intrinsic hand muscles and many functional hand movements involve repositioning of the thumb relative to other digits. In this study we explored whether changes in thumb posture in able-body volunteers can be identified and classified from the modulation of forearm muscle surface-electromyography (sEMG) alone without reference to activity from the intrinsic musculature. In this proof-of-concept study, our goal was to determine if there is scope to develop prosthetic hand control systems that may incorporate myoelectric thumb-position control. Healthy volunteers performed controlled-isometric grip tasks with their thumb held in four different opposing-postures. Grip force was maintained at 30% maximal-voluntary-force and sEMG signals from the forearm were recorded using 2D arrays (HD-sEMG). Correlations between sEMG amplitude and root-mean squared estimates with variation in thumb-position were investigated using principal-component analysis and self-organizing feature maps. Results demonstrate that forearm muscle sEMG patterns possess classifiable parameters that correlate with variations in static thumb position (accuracy of 88.25±0.5% anterior; 91.25±2.5% posterior musculature of the forearm sites). Of importance, this suggests that in transradial amputees, despite the loss of access to the intrinsic muscles that control thumb action, an acceptable level of control over a thumb component within myoelectric devices may be achievable. Accordingly, further work exploring the potential to provide myoelectric control over the thumb within a prosthetic hand is warranted.
机译:手势和握力的形成是由外在和固有手部肌肉之间产生的肌肉协同作用产生的,并且许多功能性手部运动涉及拇指相对于其他手指的重新定位。在这项研究中,我们探讨了仅通过前臂肌肉表面肌电图(sEMG)的调节,而无需参考固有肌肉组织的活动,是否能够识别并分类有能力的志愿者的拇指姿势变化。在此概念验证研究中,我们的目标是确定是否有可能开发可结合肌电拇指位置控制的假肢手控制系统。健康的志愿者将拇指握在四个不同的对立姿势中,执行受控的等距抓地任务。握力保持在最大自愿力的30%,并使用2D阵列(HD-sEMG)记录前臂的sEMG信号。使用主成分分析和自组织特征图,研究了sEMG振幅与均方根估计值与拇指位置变化之间的相关性。结果表明,前臂肌肉sEMG模式具有可分类的参数,这些参数与静态拇指位置的变化相关(前臂部位前肌肉的准确性为88.25±0.5%;前臂部位的后肌肉的准确性为91.25±2.5%)。重要的是,这表明在trans动脉截肢者中,尽管失去了控制拇指动作的内在肌肉的通路,但仍可实现对肌电设备中拇指组件的可接受的控制水平。因此,有必要进行进一步的研究,以探索在假手内对拇指提供肌电控制的潜力。

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