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Evaluation of force field training customized according to individual movement deficit patterns

机译:根据个人运动缺陷模式定制的力现场培训评估

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Variation in upper extremity motor impairments among stroke survivors creates challenges for the design of robot-assisted therapies. One approach to enhance treatment is to customize based on individual assessments of motor capabilities. However, current strategies are limited by the use of traditional assessments (e.g. Fugl-Meyer, goal-directed performance) for informing customization. Our approach characterizes natural motor behavior through distributions of self-directed motor exploration. We then design unique force fields that push participants towards their neglected movements in the velocity domain. In this study, we investigated how stroke survivors' (n = 6) movement patterns evolve with customized force field training and compared this to a control group that trained without forces (n = 6). Our results showed that both training groups improved Fugl-Meyer UE scores (2.5 ± 1.0 point and 1.5 ± 0.7 point improvements for the force field group and control group, respectively) and increased their movement capabilities in the velocity domain (104.1 ± 28.1% and 169.8 ± 101.4% increases for the force field group and control group, respectively). These results provide preliminary evidence that patient-specific force fields could be developed into a treatment that expands movement capabilities. To our knowledge, this study is the first to directly link distributions of movement to robot-assisted therapy.
机译:中风幸存者中肢体电机损伤的变化会为机器人辅助治疗的设计产生挑战。一种加强治疗的一种方法是根据对电机能力的个别评估来定制。然而,目前的策略受到传统评估的限制(例如Fugl-Meyer,目标导向的绩效),以告知定制。我们的方法通过自定向电机勘探的分布表征了天然电机行为。然后,我们设计了独特的力领域,将参与者推向速度域中的忽略的运动。在这项研究中,我们研究了行程幸存者(n = 6)运动模式如何随着定制的力场训练而发展,并将其与无力培训的对照组进行比较(n = 6)。我们的研究结果表明,两种培训组分别改善Fugl-Meyer UE分数(2.5±1.0点和1.5±0.7点,分别为力场组和控制组),并在速度域中增加了运动能力(104.1±28.1%分别为59.8±101.4%的力域组和对照组增加。这些结果提供了初步证据,即患者特定的力场可以发展成扩大运动能力的治疗方法。为了我们的知识,本研究是第一个直接链接到机器人辅助治疗的流动分布。

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