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A Novel Approach to Robot-Supported Training of Symmetry, Propulsion and Balance During Walking After Stroke: A Case Study

机译:机器人支持的中风后步行过程中对称,推进和平衡训练的新方法:一个案例研究

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To what extent gait function will be affected after a stroke depends much on the extent of neurological brain lesion and its location in the brain. Gait in stroke survivors is characterized with certain degree of gait asymmetry, weak or absent forward propulsion on the impaired side, delayed and reduced as well as less coordinated responses to external perturbations. We have recently developed an admittance-controlled Balance Assessment Robot (BAR-TM) that was used in the present research case report in long-term symmetry, push-off and perturbation training with a stroke survivor. Results show that throughout the training selected patient considerably improved gait symmetry, push-off and the timing as well as the response strategy to perturbations.
机译:中风后步态功能将在多大程度上受到影响,很大程度上取决于神经系统性脑损伤的程度及其在脑中的位置。中风幸存者的步态具有一定程度的步态不对称,受损一侧的前向推进力弱或不存在,延迟和减少以及对外部扰动的协调反应较少。我们最近开发了一种导纳控制的平衡评估机器人(BAR-TM),该机器人已在本研究案例报告中用于中风幸存者的长期对称,推举和摄动训练。结果表明,在整个训练过程中,选定的患者大大改善了步态的对称性,下垂时间和时机以及对摄动的反应策略。

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