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用于假肢控制的嵌入式系统,该系统通过骨整合植入物访问植入式神经肌肉接口。

Embedded System for Prosthetic Control Using Implanted Neuromuscular Interfaces Accessed Via an Osseointegrated Implant.

作者信息

Mastinu Enzo, Doguet Pascal, Botquin Yohan, Hakansson Bo, Ortiz-Catalan Max

出版信息

IEEE Trans Biomed Circuits Syst. 2017 Aug;11(4):867-877. doi: 10.1109/TBCAS.2017.2694710. Epub 2017 May 23.

Abstract

Despite the technological progress in robotics achieved in the last decades, prosthetic limbs still lack functionality, reliability, and comfort. Recently, an implanted neuromusculoskeletal interface built upon osseointegration was developed and tested in humans, namely the Osseointegrated Human-Machine Gateway. Here, we present an embedded system to exploit the advantages of this technology. Our artificial limb controller allows for bioelectric signals acquisition, processing, decoding of motor intent, prosthetic control, and sensory feedback. It includes a neurostimulator to provide direct neural feedback based on sensory information. The system was validated using real-time tasks characterization, power consumption evaluation, and myoelectric pattern recognition performance. Functionality was proven in a first pilot patient from whom results of daily usage were obtained. The system was designed to be reliably used in activities of daily living, as well as a research platform to monitor prosthesis usage and training, machine-learning-based control algorithms, and neural stimulation paradigms.

摘要

尽管在过去几十年里机器人技术取得了进步,但假肢仍然缺乏功能性、可靠性和舒适性。最近,一种基于骨整合的植入式神经肌肉骨骼接口在人体上得到了开发和测试,即骨整合人机网关。在此,我们展示了一个利用该技术优势的嵌入式系统。我们的人工肢体控制器能够采集生物电信号、进行处理、解码运动意图、控制假肢以及提供感觉反馈。它包括一个神经刺激器,可根据感觉信息提供直接的神经反馈。该系统通过实时任务表征、功耗评估和肌电模式识别性能进行了验证。在首位试点患者身上证明了其功能,并获得了日常使用结果。该系统设计用于可靠地应用于日常生活活动,同时也是一个用于监测假肢使用和训练、基于机器学习的控制算法以及神经刺激范式的研究平台。

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