论文标题

使用上限假体达到的任务空间协同作用

Task-space Synergies for Reaching using Upper-limb Prostheses

论文作者

Garcia-Rosas, Ricardo, Oetomo, Denny, Manzie, Chris, Tan, Ying, Choong, Peter

论文摘要

协同假体可以按日常生活活动的要求,使人类统治部门的协调运动。这是通过将假体的运动与人类指挥的运动结合,例如基于运动的界面中的残留肢体运动。先前的研究表明,在关节空间中开发人类遗传性协同作用必须考虑单个运动行为和要执行的预期任务,需要个性化和任务校准。在这项工作中,提出了一种基于协同作用的策略,利用在任务空间中表达的协同关系。这种任务空间协同作用有可能通过基于模型的方法来替代对个性化和任务校准的需求,该方法需要了解单个用户的ARM运动学,即任务过程中预期的手动运动以及从假体用户那里的自愿信息。在使用基于VR的基于VR的经过疫苗的假体对运动行为和任务性能的研究中,将所提出的方法与基于表面肌电图和基于联合空间协同的假体界面进行了比较。实验结果表明,对于一组向前的任务,所提出的任务空间协同作用可与关节空间协同作用相当,而无需依靠耗时的校准过程或人体运动学习。案例研究的结果是截肢者受试者激发了提出的任务空间协同方法的进一步发展。

Synergistic prostheses enable the coordinated movement of the human-prosthetic arm, as required by activities of daily living. This is achieved by coupling the motion of the prosthesis to the human command, such as the residual limb movement in motion-based interfaces. Previous studies demonstrated that developing human-prosthetic synergies in joint-space must consider individual motor behaviour and the intended task to be performed, requiring personalisation and task calibration. In this work, an alternative synergy-based strategy, utilising a synergistic relationship expressed in task-space, is proposed. This task-space synergy has the potential to replace the need for personalisation and task calibration with a model-based approach requiring knowledge of the individual user's arm kinematics, the anticipated hand motion during the task and voluntary information from the prosthetic user. The proposed method is compared with surface electromyography-based and joint-space synergy-based prosthetic interfaces in a study of motor behaviour and task performance on able-bodied subjects using a VR-based transhumeral prosthesis. Experimental results showed that for a set of forward reaching tasks the proposed task-space synergy achieves comparable performance to joint-space synergies without the need to rely on time-consuming calibration processes or human motor learning. Case study results with an amputee subject motivate the further development of the proposed task-space synergy method.

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