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通往神经假肢手之路:一种基于功能性电刺激的新型手部抓握矫形器。

On the road to a neuroprosthetic hand: a novel hand grasp orthosis based on functional electrical stimulation.

作者信息

Leeb Robert, Gubler Miguel, Tavella Michele, Miller Heather, Del Millan Jose R

机构信息

Non-Invasive Brain-Machine Interface, Center for Neuroprosthetics, School of Engineering, Ecole Polytechnique Fédérale de Lausanne, CH-1015, Switzerland.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:146-9. doi: 10.1109/IEMBS.2010.5627412.

Abstract

To patients who have lost the functionality of their hands as a result of a severe spinal cord injury or brain stroke, the development of new techniques for grasping is indispensable for reintegration and independency in daily life. Functional Electrical Stimulation (FES) of residual muscles can reproduce the most dominant grasping tasks and can be initialized by brain signals. However, due to the very complex hand anatomy and current limitations in FES-technology with surface electrodes, these grasp patterns cannot be smoothly executed. In this paper, we present an adaptable passive hand orthosis which is capable of producing natural and smooth movements when coupled with FES. It evenly synchronizes the grasping movements and applied forces on all fingers, allowing for naturalistic gestures and functional grasps of everyday objects. The orthosis is also equipped with a lock, which allows it to remain in the desired position without the need for long-term stimulation. Furthermore, we quantify improvements offered by the orthosis compare them with natural grasps on healthy subjects.

摘要

对于因严重脊髓损伤或脑中风而失去手部功能的患者,开发新的抓握技术对于他们重新融入日常生活并实现独立生活至关重要。对残留肌肉进行功能性电刺激(FES)可以重现最主要的抓握动作,并且可以由脑信号启动。然而,由于手部解剖结构非常复杂,以及目前表面电极FES技术的局限性,这些抓握模式无法顺利执行。在本文中,我们展示了一种适应性被动手部矫形器,当与FES结合使用时,它能够产生自然流畅的动作。它能均匀地同步所有手指的抓握动作和施加的力,实现自然的手势以及对日常物品的功能性抓握。该矫形器还配备了一个锁,使其能够保持在所需位置,无需长期刺激。此外,我们对该矫形器带来的改善进行了量化,并将其与健康受试者的自然抓握情况进行比较。

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