User-centered development process of an operating interface to couple a robotic glove with a virtual environment to optimize hand rehabilitation following a stroke.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
C E Proulx, J Higgins, C Vincent, T Vaughan, M Hewko, D H Gagnon
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Abstract

Introduction: Task-specific neurorehabilitation is crucial to optimize hand recovery shortly after a stroke, but intensive neurorehabilitation remains limited in resource-constrained healthcare systems. This has led to a growing interest in the use of robotic gloves as an adjunct intervention to intensify hand-specific neurorehabilitation. This study aims to develop and assess the usability of an operating interface supporting such a technology coupled with a virtual environment through a user-centered design approach.

Methods: Fourteen participants with hand hemiparesis following a stroke were invited to don the robotic glove before browsing through the operating interface and its functionalities, and perform two mobility exercises in a virtual environment. Feedback was collected for improving technology usability. Participants completed the System Usability Scale and ABILHAND questionnaires and their recommendations were gathered and prioritized in a Pugh Matrix.

Results: The System Usability Scale (SUS) score for the operating interface was excellent (M = 87.0 SD = 11.6). A total of 74 recommendations to improve the user interface, calibration process, and exercise usability were identified.

Conclusion: The application of a full cycle of user-centred design approach confirms the high level of usability of the system which is perceived by end users as acceptable and useful for intensifying neurorehabilitation.

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以用户为中心的操作界面开发过程,将机器人手套与虚拟环境相结合,以优化中风后的手部康复。
任务特异性神经康复是优化中风后手部恢复的关键,但在资源有限的卫生保健系统中,强化神经康复仍然有限。这导致了越来越多的人对使用机器人手套作为辅助干预来加强手部特定神经康复的兴趣。本研究旨在通过以用户为中心的设计方法,开发和评估支持这种技术与虚拟环境相结合的操作界面的可用性。方法:邀请14名中风后偏瘫的参与者戴上机器人手套,然后浏览操作界面及其功能,并在虚拟环境中进行两次活动练习。收集反馈以改进技术可用性。参与者完成了系统可用性量表和ABILHAND问卷调查,他们的建议被收集并在Pugh矩阵中排序。结果:系统可用性量表(SUS)对操作界面的评分为优秀(M = 87.0, SD = 11.6)。共提出了74项改进用户界面、校准过程和练习可用性的建议。结论:以用户为中心的全周期设计方法的应用证实了该系统的高水平可用性,最终用户认为该系统可接受并有助于加强神经康复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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