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An investigation into the reliability of upper-limb robotic exoskeleton measurements for clinical evaluation in neurorehabilitation

机译:上肢机器人外骨骼测量在神经康复临床评估中的可靠性研究

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Robotic exoskeletons are increasingly being used for neurorehabilitation, due to a number of perceived advantages. Once such advantage is the potential to use the large amounts of previously unavailable measurements to provide continuous assessment of the patient. This study investigates the validity of such measurements through an experimental protocol. Reaching movements within and outside an upper-arm rehabilitation exoskeleton (ArmeoPower) of 10 healthy subjects are compared using five commonly-used kinematic metrics (Peak Speed, Time to Peak Speed, Curvature, Smoothness, Accuracy). The study finds that (1) the robotic exoskeleton significantly affects the reaching movements of healthy subjects, (2) the measurements of the exoskeleton accurately represent the movements of the wrist, and (3) evolution of the in-exoskeleton movements over multiple sessions is indicative of changes in movements outside the robot, even though differences remain - suggesting that evolution of this data may be used to monitor patient progress.
机译:由于许多感知的优点,机器人外骨骼越来越多地用于神经孢子瘤。一旦这样的优势是使用大量预先不可用测量的可能性来提供患者的连续评估。本研究通过实验方案调查此类测量的有效性。使用五种常用的运动学测量(峰值速度,曲率,曲率,平滑度,精度,峰值速度,曲率,平滑度,精度)来比较10个健康受试者的上臂康复外骨骼(Armeopower)内外的运动。该研究发现(1)机器人外骨骼显着影响健康受试者的达到达到运动,(2)前骨骼的测量精确地代表手腕的运动,(3)在多个会话上的外骨骼运动的演变表示机器人外部的变化,即使差异仍然存在 - 表明该数据的演变可用于监测患者进度。

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