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Quantification of spasticity: identification of reflex and intrinsic mechanical properties

机译:量化痉挛:识别反射和固有的机械性能

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A parallel-cascade system identification technique was used to measure dynamic elbow stiffness in spinal cord injured (SCI), hemiparetic stroke and normal subjects. Modulation of intrinsic and reflex stiffness of elbow flexor muscles was studied by applying perturbations to the elbow at different initial joint angles with subjects' muscles relaxed. We found that reflex stiffness was similar in both spastic SCI and stroke subjects and was significantly larger than in normal subjects. The difference reached its maximum at the middle of elbow extension. Intrinsic stiffness was larger in SCI than normal subjects, whereas it was within normal range in stroke arms. The mechanical properties of the contralateral arms in stroke subjects were not normal; reflex stiffness was larger and intrinsic stiffness was lower. Both reflex and intrinsic stiffness were strongly position dependent; they both increased with increasing elbow extension. These findings demonstrate that increased reflex stiffness is the major mechanical abnormalities in SCI and stroke whereas enhanced intrinsic stiffness is important only in SCI subjects. Moreover, the contralateral side of stroke subjects is also affected.
机译:并行级联系统识别技术用于测量脊髓损伤(SCI),偏瘫,中风和正常人的动态肘关节僵硬度。通过以不同的初始关节角度对肘部施加摄动,使受试者的肌肉放松,研究了肘部屈肌的固有和反射刚度的调制。我们发现在痉挛性脊髓损伤和中风受试者中反射刚度相似,并且显着大于正常受试者。在肘部伸展的中间,差异达到最大。 SCI的固有刚度比正常受试者大,而在中风臂中则在正常范围内。脑卒中对象对侧手臂的机械性能不正常。反射刚度较大而固有刚度较低。反射力和内在刚度都与位置密切相关;它们都随着肘部伸展的增加而增加。这些发现表明,反射刚度增加是SCI和卒中的主要机械异常,而增强的固有刚度仅在SCI受试者中很重要。此外,中风受试者的对侧也受到影响。

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