Department of Imaging Sciences and Interventional Radiology, Sree Chitra Tirunal Institute for Medical Science and Technology, Trivandrum, 695011, Kerala, India.
Department of Neurology, Sree Chitra Tirunal Institute for Medical Sciences and Technology, Trivandrum, 695011, Kerala, India.
Brain Topogr. 2020 Nov;33(6):710-719. doi: 10.1007/s10548-020-00785-2. Epub 2020 Jul 19.
Resting-state functional imaging has been used to study the functional reorganization of the brain. The application of functional near-infrared spectroscopy (fNIRS) to assess resting-state functional connectivity (rsFC) has already been demonstrated in recent years. The present study aimed to identify the difference in rsFC patterns during the recovery from the upper-limb deficit due to stroke. Twenty patients with mild stroke having an onset of four to eight weeks were recruited from the stroke clinic of our institute and an equal number of healthy volunteers were included in the study after ethical committee approval. The fNIRS signals were recorded bilaterally over the premotor area and supplementary motor area and over the primary motor cortex. Pearson Correlation is the method used to compute rsFC for the healthy group and patient group. For the healthy group, both intra-hemispheric and inter-hemispheric connections were stronger. RSFC analysis demonstrated changes from the healthy pattern for the patient group with an upper-limb deficit. The left hemisphere affected group showed disrupted ipsilesional and an increased contra-lesional connectivity. The longitudinal data analysis of rsFC showed improvement in the connections in the ipsilesional hemisphere between the primary motor area, somatosensory area, and premotor areas. In the future, the rsFC changes during the recovery could be used to predict the extent of recovery from stroke motor deficits.
静息态功能成像已被用于研究大脑的功能重组。近年来,功能近红外光谱(fNIRS)已被应用于评估静息态功能连接(rsFC)。本研究旨在识别由于中风导致的上肢缺陷恢复过程中 rsFC 模式的差异。在本研究中,20 名轻度中风患者(发病时间为 4 至 8 周)从我院中风门诊招募,在伦理委员会批准后,选择了相同数量的健康志愿者作为对照组。fNIRS 信号分别在运动前区和辅助运动区以及初级运动皮层的双侧进行记录。Pearson 相关系数用于计算健康组和患者组的 rsFC。对于健康组,同侧和对侧连接都更强。rsFC 分析显示,上肢缺陷患者组的 rsFC 模式发生了变化。受影响的左侧大脑半球表现为同侧连接中断和对侧连接增加。rsFC 的纵向数据分析显示,初级运动区、体感区和运动前区之间的同侧半球连接得到了改善。在未来,恢复过程中的 rsFC 变化可用于预测中风运动缺陷的恢复程度。