使用机器人外骨骼的仪器化上肢功能评估:规范性参考间隔。

Valeria Longatelli, Beatrice Luciani, Alessandra Pedrocchi, Marta Gandolla
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引用次数: 0

摘要

上肢康复外骨骼为支持和改善神经损伤患者的康复路径提供了宝贵的解决方案。这种设备通常配备有传感器网络,可以利用该网络来评估和监控用户的性能。在这项工作中,我们评估了15名健康参与者的不同运动性能指标的正常范围,这些指标是用上肢机动外骨骼AGREE的基准工具箱计算的。该工具箱实现了一个评估上肢的基准方案,用于测试静止位置的前伸高度和手对嘴运动技能。我们选择了运动学和肌电图性能指标来评估不同的运动能力。我们对三名神经系统患者进行了初步评估,以验证AGREE基准工具箱是否能够根据所选的表现指标区分患者和健康受试者。通过对健康用户和少数运动受损用户获得的结果进行比较,我们成功地计算了所选性能指标的正常范围,并初步展示了如何使用从AGREE收集的数据来评估患者的当前状态。
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Instrumented Upper Limb Functional Assessment Using a Robotic Exoskeleton: Normative References Intervals.

Upper-limb rehabilitation exoskeletons offer a valuable solution to support and enhance the rehabilitation path of neural-injured patients. Such devices are usually equipped with a network of sensors that can be exploited to evaluate and monitor the performances of the users. In this work, we assess the normality ranges of different motor-performance indicators on a group of 15 healthy participants, computed with the benchmark toolbox of AGREE, an upper limb motorized exoskeleton. The toolbox implements a benchmarking scheme for the evaluation of the upper limb, used to test anterior reaching at rest position height and hand-to-mouth motor skills. We selected kinematic and electromyography performance indicators to assess the different motor abilities. We performed a pilot evaluation on three neurological patients, to verify if the AGREE benchmark toolbox was able to distinguish patients from healthy subjects on the basis of the selected performance indicators. Through a comparison between results obtained by the healthy and the small group of motor-impaired users, we successfully calculated the normality ranges for the selected performance indicators, and we pilot-showed how data gathered from AGREE can be used to evaluate the current status of the patients.

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Individualized Three-Dimensional Gait Pattern Generator for Lower Limbs Rehabilitation Robots. Individualized Training of Back Muscles Using Iterative Learning Control of a Compliant Balance Board. Influence of Robotic Therapy on Severe Stroke Patients. INSPIIRE - A Modular and Passive Exoskeleton to Investigate Human Walking and Balance. Instrumented Upper Limb Functional Assessment Using a Robotic Exoskeleton: Normative References Intervals.
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