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Changes of Reflex, Non-reflex and Torque Generation Properties of Spastic Ankle Plantar Flexors Induced by Intelligent Stretching

机译:智能伸展运动引起的痉挛性踝Plant屈的反射,非反射和扭矩产生特性的变化

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Spasticity, contracture, and muscle weakness are major sources of disability in stroke. Changes of torque-generating capacity as well as reflex and non-reflex properties of ankle plantar flexors induced by strenuous stretching in chronic hemiplegia were investigated. Twelve subjects with a unilateral stroke and 10 healthy controls underwent 30 minutes of strenuous intelligent stretching treatment. Reflex and non-reflex components of spastic hypertonia and force-generating capacity of ankle plantar flexors were investigated. Dorsiflexion (DF) range of motion (ROM) was increased (p=0.002) and passive stiffness and passive resistant torque of the spastic muscles were decreased (p=0.004 and 0.007, respectively), while reflex hyper-excitability diminished slightly but with no statistical significance. The maximal voluntary contraction (MVC) torque of the spastic ankle plantar flexors was increased after the forceful stretching treatment (p=0.041). In contrast, the stretching treatment of the healthy plantar flexors did not change any of the variables measured before and after stretching. The stroke subjects who gained more DF ROM or larger decrement of stiffness achieved greater increment of the peak torque generation after the stretching (r=0.597 with p=0.040 and r=-0.746 with p=0.005, respectively). These results suggest that the strenuous dynamic stretching could improve the force-generating capacity of spastic muscles as well as reduce the passive stiffness and increase ROM
机译:痉挛,挛缩和肌肉无力是中风致残的主要来源。研究了慢性偏瘫中剧烈拉伸引起的足底屈肌产生扭矩的能力以及反射和非反射特性的变化。 12名单侧中风的受试者和10名健康对照者接受了30分钟的剧烈智能拉伸治疗。研究了痉挛性高渗的反射和非反射成分以及踝plant屈肌的力量产生能力。背屈(DF)的运动范围(ROM)增大(p = 0.002),痉挛性肌肉的被动刚度和被动抵抗扭矩减小(分别为p = 0.004和0.007),而反射性过度​​兴奋性略有降低,但没有统计学意义。在强行拉伸治疗后,痉挛性踝踝plant屈肌的最大自发收缩(MVC)扭矩增加(p = 0.041)。相反,健康足底屈肌的拉伸治疗并没有改变拉伸前后所测得的任何变量。在拉伸后,获得更多DF ROM或更大刚度降低的中风受试者在峰值扭矩产生方面获得了更大的增加(分别为p = 0.040时r = 0.597和p = 0.005时r = -0.746)。这些结果表明,剧烈的动态拉伸可以提高痉挛性肌肉的力量产生能力,并降低被动的僵硬度并增加ROM。

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