唐氏综合症学龄儿童的白质微观结构

IF 4.6 2区 医学 Q1 NEUROSCIENCES
Dea Garic , Khalid W. Al-Ali , Aleeshah Nasir , Omar Azrak , Rebecca L. Grzadzinski , Robert C. McKinstry , Jason J. Wolff , Chimei M. Lee , Juhi Pandey , Robert T. Schultz , Tanya St. John , Stephen R. Dager , Annette M. Estes , Guido Gerig , Lonnie Zwaigenbaum , Natasha Marrus , Kelly N. Botteron , Joseph Piven , Martin Styner , Heather C. Hazlett , Mark D. Shen
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引用次数: 0

摘要

唐氏综合症(DS)是智力残疾最常见的遗传原因,但我们对唐氏综合症儿童白质微观结构的了解仍然有限。先前的研究报告了白质完整性的降低,但迄今为止几乎所有的研究都是在成人中进行的,或者仅仅依赖于扩散张量成像(DTI),这种方法缺乏解开白质组织潜在特性的能力。本研究采用DTI、高角分辨率扩散成像和神经突定向和弥散成像技术,对7- 12岁的DS (n = 23)、自闭症(n = 27)和典型发育(n = 50)儿童的白质微结构差异进行了研究。有一个空间特定模式的结果表明,内部和半球间的途径之间的分离。半球内通路(如额枕下束、纵向上束)表现出组织和结构完整性降低。半球间通路(如胼胝体投射)和运动通路(如皮质脊髓束)显示神经突密集堆积,神经突弥散度较低。目前的研究结果为学龄儿童退行性痴呆的白质发育提供了早期的见解,并有可能进一步阐明微观结构差异,并为更有针对性的临床试验提供信息,而不是仅仅通过DTI模型观察到的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
White matter microstructure in school-age children with down syndrome
Down syndrome (DS) is the most common genetic cause of intellectual disability, but our understanding of white matter microstructure in children with DS remains limited. Previous studies have reported reductions in white matter integrity, but nearly all studies to date have been conducted in adults or relied solely on diffusion tensor imaging (DTI), which lacks the ability to disentangle underlying properties of white matter organization. This study examined white matter microstructural differences in 7- to 12-year-old children with DS (n = 23), autism (n = 27), and typical development (n = 50) using DTI as well as High Angular Resolution Diffusion Imaging, and Neurite Orientation and Dispersion Imaging. There was a spatially specific pattern of results that showed a dissociation between intra- and inter-hemispheric pathways. Intra-hemispheric pathways (e.g., inferior fronto-occipital fasciculus, superior longitudinal fasciculus) exhibited reduced organization and structural integrity. Inter-hemispheric pathways (e.g., corpus callosum projections) and motor pathways (e.g., corticospinal tract) showed denser neurite packing and lower neurite dispersion. The current findings provide early insight into white matter development in school-aged children with DS and have the potential to further elucidate microstructural differences and inform more targeted clinical trials than what has previously been observed through DTI models alone.
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来源期刊
CiteScore
7.60
自引率
10.60%
发文量
124
审稿时长
6-12 weeks
期刊介绍: The journal publishes theoretical and research papers on cognitive brain development, from infancy through childhood and adolescence and into adulthood. It covers neurocognitive development and neurocognitive processing in both typical and atypical development, including social and affective aspects. Appropriate methodologies for the journal include, but are not limited to, functional neuroimaging (fMRI and MEG), electrophysiology (EEG and ERP), NIRS and transcranial magnetic stimulation, as well as other basic neuroscience approaches using cellular and animal models that directly address cognitive brain development, patient studies, case studies, post-mortem studies and pharmacological studies.
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