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Simultaneous characterizations of reflex and nonreflex dynamic and static changes in spastic hemiparesis

机译:痉挛性偏瘫的反射和非反射动态和静态变化的同时表征

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摘要

This study characterizes tonic and phasic stretch reflex and stiffness and viscosity changes associated with spastic hemiparesis. Perturbations were applied to the ankle of 27 hemiparetic and 36 healthy subjects under relaxed or active contracting conditions. A nonlinear delay differential equation model characterized phasic and tonic stretch reflex gains, elastic stiffness, and viscous damping. Tendon reflex was characterized with reflex gain and threshold. Reflexively, tonic reflex gain was increased in spastic ankles at rest (P < 0.038) and was not regulated with muscle contraction, indicating impaired tonic stretch reflex. Phasic-reflex gain in spastic plantar flexors was higher and increased faster with plantar flexor contraction (P < 0.012) than controls (P < 0.023) and higher in dorsi-flexors at lower torques (P < 0.038), primarily because of its increase at rest (P = 0.045), indicating exaggerated phasic stretch reflex especially in more spastic plantar flexors, which showed higher phasic stretch reflex gain than dorsi-flexors (P < 0.032). Spasticity was associated with increased tendon reflex gain (P = 0.002) and decreased threshold (P < 0.001). Mechanically, stiffness in spastic ankles was higher than that in controls across plantar flexion/dorsi-flexion torque levels (P < 0.032), and the more spastic plantar flexors were stiffer than dorsi-flexors at comparable torques (P < 0.031). Increased stiffness in spastic ankles was mainly due to passive stiffness increase (P < 0.001), indicating increased connective tissues/shortened fascicles. Viscous damping in spastic ankles was increased across the plantar flexion torque levels and at lower dorsi-flexion torques, reflecting increased passive viscous damping (P = 0.033). The more spastic plantar flexors showed higher viscous damping than dorsi-flexors at comparable torque levels (P < 0.047). Simultaneous characterizations of reflex and nonreflex changes in spastic hemiparesis may help to evaluate and treat them more effectively.
机译:这项研究的特点是与痉挛性偏瘫有关的强直和阶段性拉伸反射,僵硬和粘度变化。在放松或主动收缩的情况下,对27名半身和36名健康受试者的踝关节进行了摄动。非线性延迟微分方程模型描述了相位和张力拉伸反射增益,弹性刚度和粘性阻尼。肌腱反射的特征是反射增益和阈值。反过来,静息性痉挛性踝关节的强直反射增加(P <0.038),不受肌肉收缩的调节,表明强直拉伸反射受损。痉挛型plant屈肌的相反射增益比对照组高(P <0.012),且随着increased屈的收缩而增加(P <0.023),而在较低的扭矩下(P <0.038)背屈肌的屈光增益增加更快(P <0.038),这主要是由于其在休息(P = 0.045),表明阶段性拉伸反射过度,尤其是在痉挛性足底屈肌中,其表现出的阶段性拉伸反射增益高于背屈(P <0.032)。痉挛与肌腱反射增益增加(P = 0.002)和阈值降低(P <0.001)有关。在机械方面,在足底屈曲/背屈扭矩水平上,痉挛性踝关节的刚度高于对照组(P <0.032),在相当的扭矩下,更多的痉挛性足底屈肌比背屈屈肌更硬(P <0.031)。痉挛性踝关节僵硬的增加主要是由于被动僵硬的增加(P <0.001),表明结缔组织增加/束缩短。在足底屈曲扭矩水平和较低的背屈扭矩下,痉挛性踝关节的粘性阻尼增加,反映了被动粘性阻尼的增加(P = 0.033)。在可比较的扭矩水平下,痉挛性足底屈肌比背屈肌表现出更高的粘性阻尼(P <0.047)。痉挛性偏瘫的反射和非反射变化的同时表征可能有助于更有效地评估和治疗它们。

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