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Joint dependent passive stiffness in paretic and contralateral limbs of spastic patients with hemiparetic stroke.

机译:痉挛性脑卒中痉挛性患者对侧和对侧肢体的关节依赖性被动僵硬。

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摘要

Torque-angle relations at the elbow and ankle joints of relaxed normal controls and patients with hemiparetic stroke were compared. Low velocity flexion/hold/extension angular perturbations were applied to the joint under examination. The resulting torque-angle profiles described a hysteresis loop with similar slopes during the extension and flexion stages but separated by a vertical torque offset. Torque-angle responses obtained in the absence of significant muscle activation, as recorded by surface electromyographic activity, were designated as passive. Elbow passive stiffness estimates were calculated from the slope of the torque-angle response during the flexion stage of the perturbation. The elbow torque-angle plots exhibited linear passive stiffness with magnitude significantly lower than the passive stiffness of the ankle in both normal subjects and spastic patients. Changing ramp velocity had no significant effect on the passive torque-angle hysteresis loop at the elbow. A comparison of the torque-angle relations between hemiparetic spastic and normal control arms showed no significant differences in passive stiffness. Furthermore, no significant differences were found between paretic and contralateral upper limbs of a given hemiparetic subject. By contrast, significant differences in the torque-angle hysteresis loop were present between the paretic and contralateral ankles in all hemiparetic patients tested. These differences were more significant during dorsiflexion, and therefore seem to be related to preferential changes in mechanical properties of plantar flexor muscles. It is hypothesised that the differences in the torque-angle hysteresis loop between elbow and angle joints are related primarily to the larger amount of connective tissue in the calf muscles, as well as to a larger total physiological cross sectional area of calf muscles compared with elbow muscles. It is further hypothesized that the preferential increases in passive stiffness at the ankle in spastic legs result from immobilisation induced changes in muscle connective tissue, which are most prominent in muscles with predominantly slow-twitch fibres (such as soleus). Connective tissue surrounding such slow twitch muscle fibres have been shown to be more sensitive to immobilisation than those in fast twitch muscle. The functional, pathophysiological, and clinical implications of our findings are reviewed.
机译:比较放松正常对照者和偏瘫患者的肘部和踝关节的扭矩角度关系。将低速屈曲/保持/伸展角扰动施加到受检关节。所得的扭矩角度曲线描述了一个在伸展和屈曲阶段具有相似斜率的磁滞回线,但由垂直扭矩偏移分开。如表面肌电图活动所记录,在没有明显肌肉激活的情况下获得的扭矩角响应被指定为被动。根据摄动屈曲阶段期间扭矩角响应的斜率,计算肘部被动刚度估算值。在正常受试者和痉挛患者中,肘部扭矩角图均显示线性被动刚度,其幅度明显低于踝关节的被动刚度。改变斜坡速度对弯头的被动扭矩角磁滞回线没有显着影响。偏瘫痉挛臂和正常控制臂之间的扭矩-角度关系的比较显示,被动刚度没有显着差异。此外,在给定的偏瘫患者的上肢和对侧上肢之间未发现显着差异。相比之下,在所有接受测试的半盲患者中,顶角踝关节和对侧踝关节之间的扭矩角磁滞回线存在显着差异。这些差异在背屈期间更为显着,因此似乎与preferential屈肌机械特性的优先变化有关。假设肘和角关节之间的扭矩角滞后回线的差异主要与小腿肌肉中结缔组织的数量较大以及小腿肌肉的总生理横截面面积相比肘部有关肌肉。进一步假设,痉挛性腿的踝部被动僵硬的优先增加是由固定引起的肌肉结缔组织变化引起的,这种变化在以慢肌纤维(如比目鱼)为主的肌肉中最为明显。已经证明,围绕这种缓慢抽搐肌纤维的结缔组织比快速抽搐肌对结缔组织更敏感。我们的研究结果的功能,病理生理和临床意义进行了审查。

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