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首页> 外文期刊>Journal of NeuroEngineering Rehabilitation >Robotics-assisted visual-motor training influences arm position sense in three-dimensional space
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Robotics-assisted visual-motor training influences arm position sense in three-dimensional space

机译:机器人辅助的视觉电机训练影响三维空间中的臂位置感

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Performing activities of daily living depends, among other factors, on awareness of the position and movements of limbs. Neural injuries, such as stroke, might negatively affect such an awareness and, consequently, lead to degrading the quality of life and lengthening the motor recovery process. With the goal of improving the sense of hand position in three-dimensional (3D) space, we investigate the effects of integrating a pertinent training component within a robotic reaching task. In the proof-of-concept study presented in this paper, 12 healthy participants, during a single session, used their dominant hand to attempt reaching without vision to two targets in 3D space, which were placed at locations that resembled the functional task of self-feeding. After each attempt, participants received visual and haptic feedback about their hand’s position to accurately locate the target. Performance was evaluated at the beginning and end of each session during an assessment in which participants reached without visual nor haptic feedback to three targets: the same two targets employed during the training phase and an additional one to evaluate the generalization of training. Collected data showed a statistically significant [39.81% (p=0.001)] reduction of end-position reaching error when results of reaching to all targets were combined. End-position error to the generalization target, although not statistically significant, was reduced by 15.47%. These results provide support for the effectiveness of combining an arm position sense training component with functional motor tasks, which could be implemented in the design of future robot-assisted rehabilitation paradigms to potentially expedite the recovery process of individuals with neurological injuries.
机译:在其他因素中,执行日常生活的活动取决于肢体的职位和运动的认识。神经损伤,如中风,可能会对如此意识产生负面影响,因此导致降低寿命的质量和延长电机恢复过程。通过提高三维(3D)空间中的手势感的目标,我们研究了在机器人到达任务中集成相关训练组分的影响。在本文提出的概念证明研究中,在单一的会议期间,12名健康参与者使用他们的主导手在没有视野中尝试到达3D空间中的两个目标,这被放置在类似于自我功能任务的位置 - 食用。在每次尝试后,参与者接受了关于他们手掌的视觉和触觉反馈,以准确定位目标。在评估期间在每个会议开始和结束时评估表演,其中参与者没有视觉或触觉反馈到三个目标:在培训阶段期间使用的两个目标以及额外的目标,以评估培训的概括。收集的数据显示出统计学显着[39.81%(p = 0.001)]在达到所有靶标的结果时,终点达到误差的减少。普遍性目标的终点误差虽然没有统计学意义,但减少了15.47%。这些结果提供了支持与功能电机任务组合的有效性,可以在未来的机器人辅助康复范例的设计中实现,以潜在地加快具有神经损伤的个体的恢复过程。

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