Structural and functional changes following brain surgery in pediatric patients with intracranial space-occupying lesions

神经心理学 体素 额叶 基于体素的形态计量学 认知 心理学 脑功能偏侧化 医学 磁共振成像 神经科学 放射科 白质
作者
Xueyi Guan,Wen-Jian Zheng,Kaiyu Fan,Han Xu,Bohan Hu,Xiang Li,Zihan Yan,Zheng Lü,Jian Gong
出处
期刊:Brain Imaging and Behavior [Springer Science+Business Media]
卷期号:18 (4): 710-719
标识
DOI:10.1007/s11682-023-00799-x
摘要

We explored the structural and functional changes of the healthy hemisphere of the brain after surgery in children with intracranial space-occupying lesions. We enrolled 32 patients with unilateral intracranial space-occupying lesions for brain imaging and cognitive assessment. Voxel-based morphometry and surface-based morphometry analyses were used to investigate the structural images of the healthy hemisphere. Functional images were analyzed using regional homogeneity, amplitude of low-frequency fluctuations, and fractional-amplitude of low-frequency fluctuations. Voxel-based morphometry and surface-based morphometry analysis used the statistical model built into the CAT 12 toolbox. Paired t-tests were used for functional image and cognitive test scores. For structural image analysis, we used family-wise error correction of peak level (p < 0.05), and for functional image analysis, we use Gaussian random-field theory correction (voxel p < 0.001, cluster p < 0.05). We found an increase in gray matter volume in the healthy hemisphere within six months postoperatively, mainly in the frontal lobe. Regional homogeneity and fractional-amplitude of low-frequency fluctuations also showed greater functional activity in the frontal lobe. The results of cognitive tests showed that psychomotor speed and motor speed decreased significantly after surgery, and reasoning increased significantly after surgery. We concluded that in children with intracranial space-occupying lesions, the healthy hemisphere exhibits compensatory structural and functional effects within six months after surgery. This effect occurs mainly in the frontal lobe and is responsible for some higher cognitive compensation. This may provide some guidance for the rehabilitation of children after brain surgery.

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