Boukrina Olga, Chen Peii
Center for Stroke Rehabilitation Research, Kessler Foundation, West Orange, NJ 07052, USA.
Department of Physical Medicine and Rehabilitation, New Jersey Medical School, Rutgers University, Newark, NJ 07103, USA.
Brain Sci. 2021 Nov 5;11(11):1468. doi: 10.3390/brainsci11111468.
Functional disability due to spatial neglect hinders recovery in up to 30% of stroke survivors. Prism adaptation treatment (PAT) may alleviate the disabling consequences of spatial neglect, but we do not yet know why some individuals show much better outcomes following PAT than others. The goal of this scoping review and meta-analysis was to investigate the neural mechanisms underlying prism adaptation (PA). We conducted both quantitative and qualitative analyses across fMRI studies investigating brain activity before, during, and after PA, in healthy individuals and patients with right or left brain damage (RBD or LBD) due to stroke. In healthy adults, PA was linked with activity in posterior parietal and cerebellar clusters, reduced bilateral parieto-frontal connectivity, and increased fronto-limbic and sensorimotor network connectivity. In contrast, RBD individuals with spatial neglect relied on different circuits, including an activity cluster in the intact left occipital cortex. This finding is consistent with a shift in hemispheric dominance in spatial processing to the left hemisphere. However, more studies are needed to clarify the contribution of lesion location and load on the circuits involved in PA after unilateral brain damage. Future studies are also needed to clarify the relationship of decreasing resting state functional connectivity (rsFC) to visuomotor function.
空间忽视导致的功能障碍阻碍了多达30%的中风幸存者的康复。棱镜适应疗法(PAT)可能会减轻空间忽视的致残后果,但我们尚不清楚为何有些人在接受PAT治疗后的效果比其他人好得多。本范围综述和荟萃分析的目的是研究棱镜适应(PA)背后的神经机制。我们对功能磁共振成像(fMRI)研究进行了定量和定性分析,这些研究调查了健康个体以及因中风导致右脑或左脑损伤(RBD或LBD)的患者在PA之前、期间和之后的大脑活动。在健康成年人中,PA与顶叶后部和小脑簇的活动、双侧顶叶-额叶连接性降低以及额-边缘和感觉运动网络连接性增加有关。相比之下,患有空间忽视的RBD个体依赖于不同的神经回路,包括完整的左侧枕叶皮质中的一个活动簇。这一发现与空间处理中半球优势向左半球转移是一致的。然而,需要更多的研究来阐明单侧脑损伤后病变位置和负荷对参与PA的神经回路的影响。未来的研究还需要阐明静息态功能连接性(rsFC)降低与视觉运动功能之间的关系。