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用于严重残疾人士的五自由度上肢外骨骼的免眼舌部手势和舌部操纵杆控制

Eyes-Free Tongue Gesture and Tongue Joystick Control of a Five DOF Upper-Limb Exoskeleton for Severely Disabled Individuals.

作者信息

Mohammadi Mostafa, Knoche Hendrik, Thøgersen Mikkel, Bengtson Stefan Hein, Gull Muhammad Ahsan, Bentsen Bo, Gaihede Michael, Severinsen Kåre Eg, Andreasen Struijk Lotte N S

机构信息

Neurorehabilitation Robotics and Engineering, Center for Rehabilitation Robotics, Department of Health Science and Technology, Aalborg University, Aalborg, Denmark.

Human Machine Interaction, Department of Architecture, Design and Media Technology, Aalborg University, Aalborg, Denmark.

出版信息

Front Neurosci. 2021 Dec 17;15:739279. doi: 10.3389/fnins.2021.739279. eCollection 2021.

Abstract

Spinal cord injury can leave the affected individual severely disabled with a low level of independence and quality of life. Assistive upper-limb exoskeletons are one of the solutions that can enable an individual with tetraplegia (paralysis in both arms and legs) to perform simple activities of daily living by mobilizing the arm. Providing an efficient user interface that can provide full continuous control of such a device-safely and intuitively-with multiple degrees of freedom (DOFs) still remains a challenge. In this study, a control interface for an assistive upper-limb exoskeleton with five DOFs based on an intraoral tongue-computer interface (ITCI) for individuals with tetraplegia was proposed. Furthermore, we evaluated eyes-free use of the ITCI for the first time and compared two tongue-operated control methods, one based on tongue gestures and the other based on dynamic virtual buttons and a joystick-like control. Ten able-bodied participants tongue controlled the exoskeleton for a drinking task with and without visual feedback on a screen in three experimental sessions. As a baseline, the participants performed the drinking task with a standard gamepad. The results showed that it was possible to control the exoskeleton with the tongue even without visual feedback and to perform the drinking task at 65.1% of the speed of the gamepad. In a clinical case study, an individual with tetraplegia further succeeded to fully control the exoskeleton and perform the drinking task only 5.6% slower than the able-bodied group. This study demonstrated the first single-modal control interface that can enable individuals with complete tetraplegia to fully and continuously control a five-DOF upper limb exoskeleton and perform a drinking task after only 2 h of training. The interface was used both with and without visual feedback.

摘要

脊髓损伤会使受影响的个体严重残疾,独立性和生活质量低下。辅助上肢外骨骼是一种解决方案,可使四肢瘫痪(双臂和双腿均瘫痪)的个体通过活动手臂来进行简单的日常生活活动。提供一个高效的用户界面,能够安全、直观地对具有多个自由度(DOF)的此类设备进行完全连续控制,仍然是一个挑战。在本研究中,提出了一种基于口内舌-计算机接口(ITCI)的用于四肢瘫痪个体的五自由度辅助上肢外骨骼控制接口。此外,我们首次评估了无视觉反馈情况下ITCI的使用,并比较了两种舌控方法,一种基于舌部手势,另一种基于动态虚拟按钮和类似操纵杆的控制。十名身体健全的参与者在三个实验环节中,通过舌控操作外骨骼完成饮水任务,其中一个环节有屏幕视觉反馈,另一个环节没有。作为基线,参与者使用标准游戏手柄完成饮水任务。结果表明,即使没有视觉反馈,用舌头控制外骨骼也是可行的,并且完成饮水任务的速度达到了游戏手柄速度的65.1%。在一项临床案例研究中,一名四肢瘫痪个体进一步成功地完全控制了外骨骼,完成饮水任务的速度仅比身体健全组慢5.6%。本研究展示了首个单模态控制接口,该接口能使完全四肢瘫痪的个体在仅经过2小时训练后,就能完全且连续地控制五自由度上肢外骨骼并完成饮水任务。该接口在有视觉反馈和无视觉反馈的情况下均可使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0762/8718615/2b16e271bf3b/fnins-15-739279-g0001.jpg

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