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Modified Ashworth Scale (MAS) integrated adaptive impedance control framework for upper extremity training platform

机译:上肢训练平台的改进Ashworth Scale(MAS)集成自适应阻抗控制框架

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Robotic training platform are sought out for their promising therapeutic assistance. However, distinctive advancement has yet to resolve the monotonous and lopsided aspect of current system. Thus, this paper proposes the integration of Modified Ashworth Scale (MAS)-based assessment with dynamic impedance control model, presenting an artificial compliance within the robotic assisted training platform control framework. This enhancement is hypothesised to allow better accommodation of subject's user input under specified training regimen. Feasibility study was verified via simulation of acceleration-based impedance model under MAS 0 and 1+ contraints for linear forward motion training regimen involving elbow extension.
机译:寻求机器人培训平台的有前途的治疗帮助。然而,独特的进步尚未解决当前系统的单调和不平衡的方面。因此,本文提出了基于修正的Ashworth量表(MAS)的评估与动态阻抗控制模型的集成,提出了在机器人辅助训练平台控制框架内的人为依从性。假设此增强可以在指定的训练方案下更好地适应受试者的用户输入。通过仿真基于加速度的阻抗模型在MAS 0和1+约束下进行涉及肘伸的线性前向运动训练方案的可行性研究。

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