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The effects of Robotic-Assisted Locomotor training on spasticity and volitional control

机译:机器人辅助运动训练对痉挛和意志控制的影响

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We studied the effects of Robotic-Assisted Locomotor (LOKOMAT) Training on spasticity and volitional control of the spastic ankle in persons with incomplete Spinal Cord Injury (SCI). LOKOMAT training was performed 3 days/week during a 1-hr period including set-up time with up to 30 minutes of training during a single session. The training was provided for 4 weeks and subjects were evaluated before and after 1, 2, and 4 weeks of training. Spasticity was charterized in terms of neuromuscular abnormalities associated with the spastic joint. A system identification technique was used to quantify the effects of LOKOMAT training on these neuromuscular abnormalities. The effect of LOKOMAT training on volitional control was determined by measuring isometric maximum voluntary contraction (MVC) of ankle extensor and flexor muscles. Our results indicated that the reflex stiffness, abnormally increases in SCI, was significantly reduced (up to 65%) following 4-weeks of LOKOMAT training. Similarly, intrinsic (muscular) stiffness, which also abnormally increases in SCI, decreased significantly (up to 60%). MVCs were increased substantially (up to 93% in extensors and 180% in flexors) following 4-week training. These findings demonstrate that LOKOMAT training is effective in reducing spasticity and improving volitional control in SCI.
机译:我们研究了机器人辅助运动(LOKOMAT)训练对脊髓不完全损伤(SCI)的人的痉挛和痉挛性踝关节的自愿控制的影响。 LOKOMAT培训是在1小时内每周3天/每周进行的,包括准备时间,并且在一次培训中最多进行30分钟的培训。提供了为期4周的培训,并且在培训1、2和4周之前和之后对受试者进行了评估。根据与痉挛性关节相关的神经肌肉异常,对痉挛进行了特许。系统识别技术用于量化LOKOMAT训练对这些神经肌肉异常的影响。 LOKOMAT训练对意志控制的作用是通过测量踝伸肌和屈肌的等距最大自动收缩(MVC)来确定的。我们的结果表明,在LOKOMAT训练4周后,SCI异常增加的反射刚度显着降低(高达65%)。同样,固有(肌肉)刚度(SCI也异常增加)显着下降(最高60%)。经过4周的训练后,MVC显着增加(伸肌中最高93%,屈肌中最高180%)。这些发现表明,LOKOMAT训练可有效减少SCI中的痉挛和改善意志控制。

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