The Clinical Hospital of Chengdu Brain Science Institute, MOE Key Laboratory for Neuroinformation, Center for Information in Medicine, School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu, China.
Department of Child and Adolescent Psychiatry, New York University Grossman School of Medicine, New York, New York, USA.
Hum Brain Mapp. 2024 Sep;45(13):e26796. doi: 10.1002/hbm.26796.
Both cortical and cerebellar developmental differences have been implicated in attention-deficit/hyperactivity disorder (ADHD). Recently accumulating neuroimaging studies have highlighted hierarchies as a fundamental principle of brain organization, suggesting the importance of assessing hierarchy abnormalities in ADHD. A novel gradient-based resting-state functional connectivity analysis was applied to investigate the cerebro-cerebellar disturbed hierarchy in children and adolescents with ADHD. We found that the interaction of functional gradient between diagnosis and age was concentrated in default mode network (DMN) and visual network (VN). At the same time, we also found that the opposite gradient changes of DMN and VN caused the compression of the cortical main gradient in ADHD patients, implicating the co-occurrence of both low- (visual processing) and high-order (self-related thought) cognitive dysfunction manifesting in abnormal cerebro-cerebellar organizational hierarchy in ADHD. Our study provides a neurobiological framework to better understand the co-occurrence and interaction of both low-level and high-level functional abnormalities in the cortex and cerebellum in ADHD.
皮质和小脑的发育差异都与注意力缺陷多动障碍(ADHD)有关。最近越来越多的神经影像学研究强调了层次结构是大脑组织的基本原理,提示在 ADHD 中评估层次结构异常的重要性。应用基于梯度的静息态功能连接分析来研究 ADHD 儿童和青少年的脑-小脑紊乱层次结构。我们发现,诊断和年龄之间的功能梯度的相互作用集中在默认模式网络(DMN)和视觉网络(VN)。同时,我们还发现 DMN 和 VN 的相反梯度变化导致 ADHD 患者皮质主要梯度的压缩,提示 ADHD 中异常的脑-小脑组织层次结构中同时存在低阶(视觉处理)和高阶(自我相关思维)认知功能障碍。我们的研究为更好地理解 ADHD 中皮质和小脑的低水平和高水平功能异常的共同发生和相互作用提供了神经生物学框架。