Hesse S, Werner C, Matthias K, Stephen K, Berteanu M
Klinik Berlin, Department Neurological Rehabilitation, Free University Berlin, Germany.
Stroke. 1999 Sep;30(9):1855-61. doi: 10.1161/01.str.30.9.1855.
This study investigated the non-velocity-related effects of a 1-bar rigid ankle-foot orthosis on the gait of hemiparetic subjects, with particular emphasis on the muscle activity of the paretic lower limb.
Twenty-one hemiparetic subjects who had been using an ankle-foot orthosis for equinovarus deformity for <1 week participated. Patients walked cued by a metronome at a comparable speed with and without the orthosis. Dependent variables were basic, limb-dependent cycle parameters, gait symmetry, vertical ground reaction forces, sagittal ankle excursions, and kinesiological electromyogram of several lower limb muscles.
The use of the caliper was associated with more dynamic and balanced gait, characterized by longer relative single-stance duration of the paretic lower limb, better swing symmetry, better pivoting over the stationary paretic foot, and better ankle excursions (P<0.05). The functional activity of the paretic quadriceps muscles increased, while the activity of the paretic tibialis anterior muscle decreased (P<0.05).
The orthosis led to a more dynamic and balanced gait, with enhanced functional activation of the hemiparetic vastus lateralis muscle. The study further supports the functional benefits of a rigid ankle-foot orthosis in hemiparetic subjects as an integral part of a comprehensive rehabilitation approach. However, the reduced activity in the tibialis muscle may lead to disuse atrophy and hence long-term dependence on the orthosis.
本研究调查了1型硬式踝足矫形器对偏瘫患者步态的非速度相关影响,特别关注患侧下肢的肌肉活动。
21名因马蹄内翻畸形使用踝足矫形器不到1周的偏瘫患者参与了研究。患者在有和没有矫形器的情况下,以可比速度跟随节拍器提示行走。因变量包括基本的、与肢体相关的周期参数、步态对称性、垂直地面反作用力、矢状面踝关节活动度以及几块下肢肌肉的运动学肌电图。
使用踝足矫形器与更具动态性和平衡性的步态相关,其特征为患侧下肢相对单支撑期更长、摆动对称性更好、在静止的患侧脚上的旋转更好以及踝关节活动度更好(P<0.05)。患侧股四头肌的功能活动增加,而患侧胫前肌的活动减少(P<0.05)。
该矫形器导致更具动态性和平衡性的步态,患侧外侧股四头肌的功能激活增强。本研究进一步支持硬式踝足矫形器对偏瘫患者的功能益处,作为综合康复方法的一个组成部分。然而,胫前肌活动减少可能导致废用性萎缩,从而长期依赖矫形器。