首页> 外文期刊>Molecular Autism >Altered functional organization within the insular cortex in adult males with high-functioning autism spectrum disorder: evidence from connectivity-based parcellation
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Altered functional organization within the insular cortex in adult males with high-functioning autism spectrum disorder: evidence from connectivity-based parcellation

机译:在成年雄性内部成年型自闭症谱系疾病中的模具内部功能组织改变了功能组织:基于连接的局部的证据

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Background The insular cortex comprises multiple functionally differentiated sub-regions, each of which has different patterns of connectivity with other brain regions. Such diverse connectivity patterns are thought to underlie a wide range of insular functions, including cognitive, affective, and sensorimotor processing, many of which are abnormal in autism spectrum disorder (ASD). Although past neuroimaging studies of ASD have shown structural and functional abnormalities in the insula, possible alterations in the sub-regional organization of the insula and the functional characteristics of each sub-region have not been examined in the ASD brain. Methods Resting-state functional magnetic resonance imaging (rs-fMRI) data were acquired from 36 adult males with ASD and 38 matched typically developed (TD) controls. A data-driven clustering analysis was applied to rs-fMRI data of voxels in the left and right insula to automatically group voxels with similar intrinsic connectivity pattern into a cluster. After determining the optimal number of clusters based on information theoretic measures of variation of information and mutual information, functional parcellation patterns in both the left and the right insula were compared between the TD and ASD groups. Furthermore, functional profiles of each sub-region were meta-analytically decoded using Neurosynth and were compared between the groups. Results We observed notable alterations in the anterior sector of the left insula and the middle ventral sub-region of the right insula in the ASD brain. Meta-analytic decoding revealed that whereas the anterior sector of the left insula contained two functionally differentiated sub-regions for cognitive, sensorimotor, and emotional/affective functions in TD brain, only a single functional cluster for cognitive and sensorimotor functions was identified in the anterior sector in the ASD brain. In the right insula, the middle ventral sub-region, which is primarily specialized for sensory- and auditory-related functions, showed a significant volumetric increase in the ASD brain compared with the TD brain. Conclusions The results indicate an altered organization of sub-regions in specific parts of the left and right insula of the ASD brain. The alterations in the left and right insula may constitute neural substrates underlying abnormalities in emotional/affective and sensory functions in ASD.
机译:背景技术凸起的皮质包括多个功能差异化的子区域,每个子区域具有与其他脑区域的不同连接模式。这种不同的连接模式被认为利用广泛的蒙着函数,包括认知,情感和传感器处理,其中许多在自闭症谱系(ASD)中异常。虽然过去的神经影像学研究表明了Insula中的结构性和功能异常,但在ASD大脑中尚未检查肠外区域组织和每个亚区域的功能特征的可能改变。方法休息状态功能磁共振成像(RS-FMRI)数据从36种成年男性中获取,ASD和38型常用通常发育(TD)控制。将数据驱动的聚类分析应用于左侧和右侧Inslua中的体素的RS-FMRI数据,以自动将具有与群集相似的内部连接模式的体素进行组。在基于信息和互信息的变化的信息的信息学措施确定最佳数量的簇之后,在TD和ASD组之间比较左和右侧Inslula中的功能局部局部模式。此外,每个亚区域的功能性谱使用Neurosynth进行Meta分析解码,并在组之间进行比较。结果我们观察到左侧肠道前部门和右脑中右侧肠道中腹部区域的显着改变。元分析解码显示,左侧insula的前扇区包含两个功能差异化的用于认知,传感器和情绪/情感功能的功能分化的子区,而在TD大脑中只有一个用于认知和传感器功能的单一功能集群在前部在ASD大脑中的部门。在右侧Insula中,主要是专门用于感觉和听觉相关功能的中间腹部区域,与TD脑相比,ASD脑的显着增加。结论结果表明ASD大脑左右肠道的特定部位和右侧肠道的特定部分的改变组织。左侧和右侧Insula的改变可能构成神经基质,在ASD中的情绪/情感和感官功能中的潜在异常。

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