Lee Hyun-Ah, Kim Dae-Hyun
Department of Physical Medicine and Rehabilitation, Veterans Health Service Medical Center, Seoul 05368, Korea.
Department and Research Institute of Rehabilitation Medicine, Yonsei University College of Medicine, Seoul 03722, Korea.
Brain Sci. 2021 Jun 29;11(7):870. doi: 10.3390/brainsci11070870.
Gait dysfunction is a leading cause of long-term disability after stroke. The mechanisms underlying recovery of gait function are unknown. We retrospectively evaluated the association between structural connectivity and gait function in 127 patients with unilateral supratentorial stroke (>1 month after stroke). All patients underwent T1-weighted, diffusion tensor imaging and functional ambulation categorization. Voxel-wise linear regression analyses of the images were conducted using fractional anisotropy, mean diffusivity, and mode of anisotropy mapping as dependent variables, while the functional ambulation category was used as an independent variable with age and days after stroke as covariates. The functional ambulation category was positively associated with increased fractional anisotropy in the lesioned cortico-ponto-cerebellar system, corona radiata of the non-lesioned corticospinal tract pathway, bilateral medial lemniscus in the brainstem, and the corpus callosum. The functional ambulation category was also positively associated with increased mode of anisotropy in the lesioned posterior corpus callosum. In conclusion, structural connectivity associated with motor coordination and feedback affects gait function after stroke. Diffusion tensor imaging for evaluating structural connectivity can help to predict gait recovery and target rehabilitation goals after stroke.
步态功能障碍是中风后长期残疾的主要原因。步态功能恢复的潜在机制尚不清楚。我们回顾性评估了127例单侧幕上中风患者(中风后>1个月)的结构连通性与步态功能之间的关联。所有患者均接受了T1加权、扩散张量成像和功能性步行分类。使用分数各向异性、平均扩散率和各向异性映射模式作为因变量,对图像进行体素级线性回归分析,而功能性步行分类作为自变量,年龄和中风后天数作为协变量。功能性步行分类与病变的皮质桥小脑系统、未病变的皮质脊髓束通路的放射冠、脑干双侧内侧丘系和胼胝体中分数各向异性增加呈正相关。功能性步行分类也与病变的胼胝体后部各向异性模式增加呈正相关。总之,与运动协调和反馈相关的结构连通性影响中风后的步态功能。用于评估结构连通性的扩散张量成像有助于预测中风后的步态恢复并确定康复目标。