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ROBOTIC NEUROMUSCULAR FACILITATION FOR REGAINING NEURAL ACTIVATION IN HEMIPARETIC LIMBS

机译:机器人神经肌肉设施在半肝肢中维持神经活化

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This paper introduces an effective engineered rehabilitation system for understanding and inducing functional recovery of hemiparetic limbs based on the concept of timing-dependent in- duction of neural plasticity. Limb motor function is commonly impaired after neurologic injury such as stroke, with hemipare-sis being one of the major impairments. In an emerging unique intervention for hemiparesis, named repetitive facilitation exercise, or RFE, a therapist manually applies brief mechanical stimuli to the peripheral target muscles (e.g., tapping, stretching of tendon/muscle) immediately before a patient intends to produce a movement with the muscle. The practice of this rehabilitation procedure by a skilled therapist often leads to dramatic rehabilitation outcomes. However, unskilled therapists, most likely due to the inaccuracy of the timing of peripheral stimulation in reference to the intention of movement (i.e. motor command), are unable to recreate the same rehabilitation results. Robotic rehabilitation, on the other hand, can improve the reliability and efficacy of the operation by satisfying the timing precision required by the therapy. This study demonstrates the use of a pneumatically-driven MRI-compatible robot for RFE assessment. The pressure dynamics of the system is studied for an accurate estimation on the time of response of the robot. The required temporal precision of the therapy is obtained and the use of the device is validated through experiments on a human subject.
机译:本文基于神经可塑性的时间依赖性诱导概念,介绍了一种有效的工程康复系统,用于理解和诱导偏瘫肢体的功能恢复。在中风等神经系统损伤后,肢体运动功能通常受损,其中偏瘫是主要的损伤之一。在出现一种针对偏瘫的新兴独特干预措施(称为重复促进锻炼或RFE)中,治疗师在患者要立即进行偏瘫运动之前,对其周围的目标肌肉进行了短暂的机械刺激(例如,敲击,拉伸肌腱/肌肉)。肌肉。熟练的治疗师对这种康复程序的实践通常会导致戏剧性的康复结果。但是,非熟练的治疗师,很可能是由于周围刺激的时机相对于运动意图(即运动命令)的时机不准确,无法重现相同的康复结果。另一方面,通过满足治疗所需的定时精度,机器人康复可以提高手术的可靠性和有效性。这项研究证明了使用气动的MRI兼容机器人进行RFE评估。对系统的压力动力学进行了研究,以准确估计机器人的响应时间。获得了所需的治疗时间精度,并通过在人类受试者上进行的实验验证了该设备的使用。

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