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Haptic-Based Neurorehabilitation in Poststroke Patients: A Feasibility Prospective Multicentre Trial for Robotics Hand Rehabilitation

机译:中风后患者的基于触觉的神经康复:机器人手部康复的可行性前瞻性多中心试验

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摘要

Background. Haptic robots allow the exploitation of known motor learning mechanisms, representing a valuable option for motor treatment after stroke. The aim of this feasibility multicentre study was to test the clinical efficacy of a haptic prototype, for the recovery of hand function after stroke. Methods. A prospective pilot clinical trial was planned on 15 consecutive patients enrolled in 3 rehabilitation centre in Italy. All the framework features of the haptic robot (e.g., control loop, external communication, and graphic rendering for virtual reality) were implemented into a real-time MATLAB/Simulink environment, controlling a five-bar linkage able to provide forces up to 20 [N] at the end effector, used for finger and hand rehabilitation therapies. Clinical (i.e., Fugl-Meyer upper extremity scale; nine hold pegboard test) and kinematics (i.e., time; velocity; jerk metric; normalized jerk of standard movements) outcomes were assessed before and after treatment to detect changes in patients' motor performance. Reorganization of cortical activation was detected in one patient by fMRI. Results and Conclusions. All patients showed significant improvements in both clinical and kinematic outcomes. Additionally, fMRI results suggest that the proposed approach may promote a better cortical activation in the brain.
机译:背景。触觉机器人允许利用已知的运动学习机制,这代表了中风后运动治疗的宝贵选择。这项多中心可行性研究的目的是测试触觉原型的临床功效,以恢复中风后的手功能。方法。计划对意大利3个康复中心的15名连续患者进行前瞻性临床试验。触觉机器人的所有框架功能(例如,控制环,外部通信和虚拟现实的图形渲染)均已实现到实时MATLAB / Simulink环境中,控制五杆连杆机构,能够提供最大20 provide的力。 N]位于末端执行器,用于手指和手的康复治疗。在治疗前后评估临床结果(即Fugl-Meyer上肢量表;九次固定钉板测试)和运动学(即时间,速度,加速度率度量;标准动作的加速度率标准化),以检测患者运动表现的变化。通过fMRI在一名患者中检测到皮质激活的重组。结果和结论。所有患者的临床和运动学结果均显示出明显改善。此外,功能磁共振成像结果表明,所提出的方法可能促进大脑中更好的皮质激活。

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