多体素模式分析揭示自闭症和注意缺陷/多动障碍的功能连接改变。

IF 2.4 3区 医学 Q3 NEUROSCIENCES
Brain connectivity Pub Date : 2023-11-01 Epub Date: 2023-08-22 DOI:10.1089/brain.2023.0006
Smitha Karavallil Achuthan, Despina Stavrinos, Haley B Holm, Sheeba Arnold Anteraper, Rajesh K Kana
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引用次数: 1

摘要

背景:自闭症和注意力缺陷/多动障碍(ADHD)是共病性神经发育障碍,具有共同和独特的神经生物学机制,大脑连接模式中断是这两种疾病的标志性特征。因为自闭症和多动症的大脑连通性变化是异质的,所以对潜在疾病的机制理解是具有挑战性的。目的:目前静息状态功能MRI (rs-fMRI)研究的重点是利用多体素模式分析(MVPA)研究自闭症和ADHD成人的共享和独特静息状态- fmri连接(rsFC)模式。通过识别fMRI活动在给定时间过程中的空间模式,MVPA是一种创新而强大的方法,可以在没有先验假设的情况下生成感兴趣的种子区域(roi)。方法:我们对15名自闭症、19名ADHD和15名神经典型(NT)年轻人的rs-fMRI数据进行了数据驱动、全脑、全连接体的MVPA。结果:MVPA识别出自闭症与NT的小脑蚓部9、楔前叶和右侧小脑VI, ADHD与NT的右侧额下回和蚓部9,自闭症与ADHD的右侧背外侧前额叶皮层为显著簇。使用这些聚类作为种子roi进行事后种子到体素分析,以进一步表征组间差异。与NT相比,自闭症成人的小脑VI、小脑蚓部和楔前叶以及ADHD的小脑蚓部和额叶区显示出不同的连接模式。结论:本研究表征了自闭症和ADHD的小脑rsFC特征与关键皮质区,强调了研究小脑功能连接在神经发育障碍中的作用的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alterations of Functional Connectivity in Autism and Attention-Deficit/Hyperactivity Disorder Revealed by Multi-Voxel Pattern Analysis.

Background: Autism and attention-deficit/hyperactivity disorder (ADHD) are comorbid neurodevelopmental disorders that share common and distinct neurobiological mechanisms, with disrupted brain connectivity patterns being a hallmark feature of both conditions. It is challenging to gain a mechanistic understanding of the underlying disorder, because brain connectivity changes in autism and ADHD are heterogeneous. Objectives: The present resting state functional MRI (rs-fMRI) study focuses on investigating the shared and distinct resting state-fMRI connectivity (rsFC) patterns in autistic and ADHD adults using multi-voxel pattern analysis (MVPA). By identifying spatial patterns of fMRI activity across a given time course, MVPA is an innovative and powerful method for generating seed regions of interest (ROIs) without a priori hypotheses. Methods: We performed a data-driven, whole-brain, connectome-wide MVPA on rs-fMRI data collected from 15 autistic, 19 ADHD, and 15 neurotypical (NT) young adults. Results: MVPA identified cerebellar vermis 9, precuneus, and the right cerebellum VI for autistic versus NT, right inferior frontal gyrus and vermis 9 for ADHD versus NT, and right dorsolateral prefrontal cortex for autistic versus ADHD as significant clusters. Post hoc seed-to-voxel analyses using these clusters as seed ROIs were performed for further characterization of group differences. The cerebellum VI, vermis, and precuneus in autistic adults, and the vermis and frontal regions in ADHD showed different connectivity patterns in comparison with NT. Conclusions: The study characterizes the rsFC profile of cerebellum with key cortical areas in autism and ADHD, and it emphasizes the importance of studying the role of the functional connectivity of the cerebellum in neurodevelopmental disorders.

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来源期刊
Brain connectivity
Brain connectivity Neuroscience-General Neuroscience
CiteScore
4.80
自引率
0.00%
发文量
80
期刊介绍: Brain Connectivity provides groundbreaking findings in the rapidly advancing field of connectivity research at the systems and network levels. The Journal disseminates information on brain mapping, modeling, novel research techniques, new imaging modalities, preclinical animal studies, and the translation of research discoveries from the laboratory to the clinic. This essential journal fosters the application of basic biological discoveries and contributes to the development of novel diagnostic and therapeutic interventions to recognize and treat a broad range of neurodegenerative and psychiatric disorders such as: Alzheimer’s disease, attention-deficit hyperactivity disorder, posttraumatic stress disorder, epilepsy, traumatic brain injury, stroke, dementia, and depression.
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