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与偏瘫性卒中上肢肌肉痉挛相关的神经肌肉异常

Neuromuscular abnormalities associated with spasticity of upper extremity muscles in hemiparetic stroke.

作者信息

Mirbagheri M M, Settle K, Harvey R, Rymer W Z

机构信息

Department of Sensory Motor Performance Program, The Rehabilitation Institute of Chicago, Chicago, IL 60611, USA.

出版信息

J Neurophysiol. 2007 Aug;98(2):629-37. doi: 10.1152/jn.00049.2007. Epub 2007 May 30.

Abstract

Our objective was to assess the mechanical changes associated with spasticity in elbow muscles of chronic hemiparetic stroke survivors and to compare these changes with those recorded in the ankle muscles of a similar cohort. We first characterized elbow dynamic stiffness by applying pseudorandom binary positional perturbations to the joints at different initial angles, over the entire range of motion, with subjects relaxed. We separated this stiffness into intrinsic and reflex components using a novel parallel cascade system identification technique. In addition, for controls, we studied the nonparetic limbs of stroke survivors and limbs of age-matched healthy subjects as primary and secondary controls. We found that both reflex and intrinsic stiffnesses were significantly larger in the stroke than in the nonparetic elbow muscles, and the differences increased as the elbow was extended. Reflex stiffness increased monotonically with the elbow angle in both paretic and nonparetic sides. In contrast, the modulation of intrinsic stiffness with elbow position was different in nonparetic limbs; intrinsic stiffness decreased sharply from full- to mid-flexion in both sides, then it increased continuously with the elbow extension in the paretic side. It remained invariant in the nonparetic side. Surprisingly, reflex stiffness was larger in the nonparetic than in the normal control arm, yet intrinsic stiffness was smaller in the nonparetic arm. Finally, we compare the angular dependence of paretic elbow and ankle muscles and show that the modulation of reflex stiffness with position was strikingly different.

摘要

我们的目标是评估慢性偏瘫性中风幸存者肘部肌肉痉挛相关的力学变化,并将这些变化与类似队列中踝关节肌肉记录的变化进行比较。我们首先通过在受试者放松的状态下,在整个运动范围内对不同初始角度的关节施加伪随机二进制位置扰动来表征肘部动态刚度。我们使用一种新颖的并行级联系统识别技术将这种刚度分为固有成分和反射成分。此外,对于对照组,我们研究了中风幸存者的非瘫痪肢体以及年龄匹配的健康受试者的肢体作为主要和次要对照。我们发现,中风患者瘫痪肘部肌肉的反射刚度和固有刚度均显著大于非瘫痪肘部肌肉,并且随着肘部伸展,差异增大。在瘫痪侧和非瘫痪侧,反射刚度均随肘部角度单调增加。相比之下,非瘫痪肢体中固有刚度随肘部位置的调节有所不同;两侧固有刚度在从完全屈曲到半屈曲时均急剧下降,然后在瘫痪侧随肘部伸展持续增加,在非瘫痪侧则保持不变。令人惊讶的是,非瘫痪侧的反射刚度大于正常对照手臂,但非瘫痪手臂的固有刚度较小。最后,我们比较了瘫痪肘部和踝关节肌肉的角度依赖性,结果表明反射刚度随位置的调节存在显著差异。

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