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Effects of Focal Vibration and Robotic Assistive Therapy on Upper Limb Spasticity in incomplete Spinal Cord Injury

机译:局灶性振动和机器人辅助治疗对不完全脊髓损伤中上肢痉挛的影响

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摘要

Vibration stimulation seems to be an affordable easy-to-use rehabilitation tool. Focal muscle vibration (FV) has potential to reduce spasticity and enhance muscle strength and performance. Combined with robotic assisted movement therapy, the rehabilitation can benefit from improvement of more than one aspect. For example, FV could firstly decrease abnormally increased muscle tone and joint rigidity by tackling volitional control for easier robotic movement exercise. Exactly this approach is evaluated within a clinical trial presented in this paper. FV were applied to relaxed spastic wrist flexor and extensor muscles for 15min. Subsequently, the wrist was engaged in a robotic-assisted game-playing. Results from two cases who completed the trial showed short-term decrease in wrist stiffness as assessed by clinical spasticity measurement Modified Ashworth Scale (MAS). Active range of motion (AROM) and engineering joint stiffness (JS) measurements were estimated using a robotic apparatus and the results complemented previous observations. The AROM increased and JS decreased for both cases when compared at the beginning and at the end of each interventional session. These results are a part of an ongoing clinical trial but show promise for reducing repercussions of spasticity in incomplete spinal cord injury.
机译:振动刺激似乎是负担得起的易于使用的康复工具。局灶性肌肉振动(FV)具有减少痉挛,增强肌肉力量和性能的潜力。结合机器人辅助运动疗法,康复可以受益于多个方面的改善。例如,FV首先可以通过应对意志控制来减少异常增加的肌肉张力和关节僵硬,从而使机器人运动更容易。正是在本文介绍的一项临床试验中对这种方法进行了评估。 FV应用于松弛的痉挛性腕屈肌和伸肌15分钟。随后,手腕进行了机器人辅助的游戏。根据临床痉挛测量改良的Ashworth量表(MAS)评估,两名完成该试验的病例的结果显示腕部僵硬程度短期降低。使用机器人设备估计了活动范围(AROM)和工程关节刚度(JS)的测量结果,该结果对以前的观察结果进行了补充。与每次介入治疗开始和结束时相比,这两种情况的AROM均增加,而JS则降低。这些结果是正在进行的临床试验的一部分,但显示出有望减少不完全脊髓损伤中痉挛的影响。

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