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An Alternative Myoelectric Pattern Recognition Approach for the Control of Hand Prostheses: A Case Study of Use in Daily Life by a Dysmelia Subject

机译:一种替代的肌电图案识别方法,用于控制手术室的控制:一种痛经血液血液中日常生活中使用的案例研究

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摘要

The functionality of upper limb prostheses can be improved by intuitive control strategies that use bioelectric signals measured at the stump level. One such strategy is the decoding of motor volition via myoelectric pattern recognition (MPR), which has shown promising results in controlled environments and more recently in clinical practice. Moreover, not much has been reported about daily life implementation and real-time accuracy of these decoding algorithms. This paper introduces an alternative approach in which MPR allows intuitive control of four different grips and open/close in a multifunctional prosthetic hand. We conducted a clinical proof-of-concept in activities of daily life by constructing a self-contained, MPR-controlled, transradial prosthetic system provided with a novel user interface meant to log errors during real-time operation. The system was used for five days by a unilateral dysmelia subject whose hand had never developed, and who nevertheless learned to generate patterns of myoelectric activity, reported as intuitive, for multi-functional prosthetic control. The subject was instructed to manually log errors when they occurred via the user interface mounted on the prosthesis. This allowed the collection of information about prosthesis usage and real-time classification accuracy. The assessment of capacity for myoelectric control test was used to compare the proposed approach to the conventional prosthetic control approach, direct control. Regarding the MPR approach, the subject reported a more intuitive control when selecting the different grips, but also a higher uncertainty during proportional continuous movements. This paper represents an alternative to the conventional use of MPR, and this alternative may be particularly suitable for a certain type of amputee patients. Moreover, it represents a further validation of MPR with dysmelia cases.
机译:通过在树桩水平上测量的直观控制策略,可以通过使用生物电信号的直观控制策略来提高上肢假体的功能。一种这样的策略是通过肌电模式识别(MPR)的电动机意积进行解码,这在受控环境中显示了有希望的结果,并且最近在临床实践中更新。此外,已经报道了这些解码算法的日常生活实现和实时准确性并不多。本文介绍了一种替代方法,其中MPR允许在多功能假肢手中直观地控制四种不同的夹具和打开/关闭。我们在日常生活活动中进行了一项临床概念,通过构建了一个自包含的MPR控制的巨大跨越的跨越假肢制度,所述巨大的跨越假肢制度,所述巨大的用户界面意味着在实时操作期间记录误差。该系统由一名单侧讨厌的疑问使用,手工从未发展过,并且仍然学会生成肌电活动模式,报告为直观,用于多功能假肢控制。当通过安装在假体上的用户界面发生时,指示主题手动记录错误。这允许收集关于假体使用和实时分类准确性的信息。使用摩金电控制试验能力评估,用于比较常规假体控制方法,直接控制的提出方法。 Regarding the MPR approach, the subject reported a more intuitive control when selecting the different grips, but also a higher uncertainty during proportional continuous movements.本文代表了MPR的常规使用的替代方法,并且该替代方案可能特别适用于某种类型的截肢患者。此外,它代表了MPR的进一步验证了患有疑似病例。

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