Kim Dae Hyun, Kang Chang Soon, Kyeong Sohyun
Department of Physical Medicine and Rehabilitation, Veterans Health Service Medical Center, Seoul, South Korea.
NeuroRehabilitation. 2020;46(4):483-489. doi: 10.3233/NRE-203054.
Robot-assisted gait training (RAGT) can improve walking ability after stroke but the underlying mechanisms are unknown.
We evaluated the changes in the injured brain after RAGT and compared the effects of early start and late start of RAGT.
Eleven patients with hemiplegia after stroke undergoing inpatient rehabilitation were examined within 3 months of stroke onset and were randomly assigned into two groups. Group 1 started RAGT with conventional physiotherapy immediately after enrollment, whereas Group 2 underwent conventional physiotherapy for 4 weeks before starting RAGT. We acquired diffusion tensor imaging data after enrollment and at 4 and 8 weeks after treatment. Fractional anisotropy (FA) and mean diffusivity (MD) maps were used to analyze the neural changes.
Repeated measures analysis of variance of the data at 4 weeks after treatment showed a significant interaction between time and groups (RAGT versus control) for the FA and MD values in the non-lesioned hemisphere, indicating that the non-lesioned hemisphere was significantly reorganized by RAGT compared with conventional physiotherapy. Analysis of the data at 8 weeks after treatment showed a significant interaction between time and groups (early and late start of RAGT) for the MD values in the motor-related areas bilaterally, indicating that early start of RAGT significantly accelerated bi-hemispheric reorganization as compared with late start of RAGT.
Our findings indicate that RAGT can facilitate reorganization in the intact superior temporal, cingulate, and postcentral gyri. Furthermore, early start of RAGT can accelerate bi-hemispheric reorganization in the motor-related brain regions.
机器人辅助步态训练(RAGT)可改善中风后的步行能力,但其潜在机制尚不清楚。
我们评估了RAGT后受损大脑的变化,并比较了RAGT早期开始和晚期开始的效果。
11例中风后偏瘫患者在中风发作后3个月内接受住院康复治疗,并随机分为两组。第1组在入组后立即开始RAGT并结合传统物理治疗,而第2组在开始RAGT前接受4周的传统物理治疗。我们在入组时以及治疗后4周和8周获取扩散张量成像数据。使用分数各向异性(FA)和平均扩散率(MD)图来分析神经变化。
治疗后4周数据的重复测量方差分析显示,非病变半球的FA和MD值在时间和组(RAGT与对照组)之间存在显著交互作用,表明与传统物理治疗相比,RAGT使非病变半球发生了显著重组。治疗后8周数据的分析显示,双侧运动相关区域的MD值在时间和组(RAGT早期和晚期开始)之间存在显著交互作用,表明与RAGT晚期开始相比,RAGT早期开始显著加速了双侧半球重组。
我们的研究结果表明,RAGT可促进完整的颞上回、扣带回和中央后回的重组。此外,RAGT早期开始可加速运动相关脑区的双侧半球重组。