首页> 外文期刊>Human brain mapping >Network-based analysis reveals stronger local diffusion-based connectivity and different correlations with oral language skills in brains of children with high functioning autism spectrum disorders
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Network-based analysis reveals stronger local diffusion-based connectivity and different correlations with oral language skills in brains of children with high functioning autism spectrum disorders

机译:基于网络的分析揭示了基于局部扩散的连接和与具有高功率自闭症谱系统的儿童大脑中的口语技能不同的相关性

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摘要

Neuroimaging has uncovered both long-range and short-range connectivity abnormalities in the brains of individuals with autism spectrum disorders (ASD). However, the precise connectivity abnormalities and the relationship between these abnormalities and cognition and ASD symptoms have been inconsistent across studies. Indeed, studies find both increases and decreases in connectivity, suggesting that connectivity changes in the ASD brain are not merely due to abnormalities in specific connections, but rather, due to changes in the structure of the network in which the brain areas interact (i.e., network topology). In this study, we examined the differences in the network topology between high-functioning ASD patients and age and gender matched typically developing (TD) controls. After quantitatively characterizing the whole-brain connectivity network using diffusion tensor imaging (DTI) data, we searched for brain regions with different connectivity between ASD and TD. A measure of oral language ability was then correlated with the connectivity changes to determine the functional significance of such changes. Whole-brain connectivity measures demonstrated greater local connectivity and shorter path length in ASD as compared to TD. Stronger local connectivity was found in ASD, especially in regions such as the left superior parietal lobule, the precuneus and angular gyrus, and the right supramarginal gyrus. The relationship between oral language ability and local connectivity within these regions was significantly different between ASD and TD. Stronger local connectivity was associated with better performance in ASD and poorer performance in TD. This study supports the notion that increased local connectivity is compensatory for supporting cognitive function in ASD. Hum Brain Mapp 35:396-413, 2014.
机译:Neuroomaging在具有自闭症谱紊乱(ASD)的个体的大脑中发现了长距离和短距离连接异常。然而,精确的连接性异常和这些异常和认知与ASD症状之间的关系在研究方面存在不一致。实际上,研究发现两者都增加并降低了连接,表明ASD大脑中的连接变化不仅是由于特定连接的异常,而是由于大脑区域交互的网络结构的变化(即,网络拓扑结构)。在这项研究中,我们研究了高效ASD患者和年龄和性别匹配通常发展(TD)对照之间的网络拓扑之间的差异。在使用扩散张量成像(DTI)数据中定量表征全脑连接网络之后,我们在ASD和TD之间搜索了具有不同连接的脑区域。然后,衡量口语能力的能力与连接变化相关,以确定这些变化的功能意义。与TD相比,全脑连接措施在ASD中显示出更大的局部连接和较短的路径长度。在ASD中发现了更强大的局部连接,特别是在左上方的顶叶叶片,前静脉和角度转象等地区,以及右髁上的常春藤。在这些区域内的口语能力与本地连接之间的关系在ASD和TD之间显着差异。强大的局部连接与TD的ASD和较差的性能相关。本研究支持增加局部连接性的概念是支持ASD中的认知功能的补偿。 HUM Brain MAPP 35:396-413,2014。

著录项

  • 来源
    《Human brain mapping》 |2014年第2期|共18页
  • 作者单位

    Department of Systems Medicine and Bioengineering Methodist Hospital Research Institute Weill;

    Department of Systems Medicine and Bioengineering Methodist Hospital Research Institute Weill;

    Department of Neurosurgery University of Texas Health Science Center Houston TX United States;

    Division of Autism Research Arkansas Children's Hospital Research Institute University of;

    Department of Systems Medicine and Bioengineering Methodist Hospital Research Institute Weill;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学;
  • 关键词

    Autism spectrum disorders; Brain network; Connectivity; Diffusion tensor imaging; Oral language;

    机译:自闭症谱系障碍;脑网络;连接;扩散张量成像;口语;

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