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首页> 外文期刊>Molecular Autism >Default mode network in young male adults with autism spectrum disorder: relationship with autism spectrum traits
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Default mode network in young male adults with autism spectrum disorder: relationship with autism spectrum traits

机译:青少年自闭症谱系障碍的默认模式网络:与自闭症谱系特征的关系

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Background Autism spectrum traits are postulated to lie on a continuum that extends between individuals with autism and individuals with typical development (TD). Social cognition properties that are deeply associated with autism spectrum traits have been linked to functional connectivity between regions within the brain’s default mode network (DMN). Previous studies have shown that the resting-state functional connectivities (rs-FCs) of DMN are low and show negative correlation with the level of autism spectrum traits in individuals with autism spectrum disorder (ASD). However, it is unclear whether individual differences of autism spectrum traits are associated with the strength of rs-FCs of DMN in participants including the general population. Methods Using the seed-based approach, we investigated the rs-FCs of DMN, particularly including the following two core regions of DMN: the anterior medial prefrontal cortex (aMPFC) and posterior cingulate cortex (PCC) in 19 young male adults with high-functioning ASD (mean age?=?25.3?±?6.9 years; autism-spectrum quotient (AQ)?=?33.4?±?4.2; full scale IQ (F-IQ)?=?109.7?±?12.4) compared with 21 age- and IQ-matched young male adults from the TD group (mean age?=?24.8?±?4.3 years; AQ?=?18.6?±?5.7; F-IQ?=?109.5?±?8.7). We also analyzed the correlation between the strength of rs-FCs and autism spectrum traits measured using AQ score. Results The strengths of rs-FCs from core regions of DMN were significantly lower in ASD participants than TD participants. Under multiple regression analysis, the strengths of rs-FCs in brain areas from aMPFC seed showed negative correlation with AQ scores in ASD participants and TD participants. Conclusions Our findings suggest that the strength of rs-FCs in DMN is associated with autism spectrum traits in the TD population as well as patients with ASD, supporting the continuum view. The rs-FCs of DMN may be useful biomarkers for the objective identification of autism spectrum traits, regardless of ASD diagnosis.
机译:背景自闭症的频谱特征被假定为在自闭症个体与典型发展个体(TD)之间延伸的连续体。与自闭症谱系特征密切相关的社会认知特性已经与大脑默认模式网络(DMN)区域之间的功能连接性联系在一起。先前的研究表明,DMN的静息状态功能连接性(rs-FCs)低,并且与自闭症谱系障碍(ASD)的个体的自闭症谱特征水平呈负相关。然而,尚不清楚自闭症谱特征的个体差异是否与包括普通人群在内的参与者的DMN rs-FC强度有关。方法使用基于种子的方法,我们调查了19例高发男性青年中DMN的rs-FC,特别是DMN的以下两个核心区域:前额叶前皮质(aMPFC)和扣带后皮质(PCC)。正常的ASD(平均年龄== 25.3±6.9岁;自闭症谱商(AQ)= 33.4±4.2;全面智商(F-IQ)= 109.7±12.4) TD组的21名年龄和智商匹配的年轻男性成年人(平均年龄≥24.8±4.3岁;AQ≥18.6±5.7;F-IQ≥109.5±8.7)。我们还分析了rs-FC强度与使用AQ评分测得的自闭症频谱特征之间的相关性。结果ASD参与者的DMN核心区域的rs-FCs的强度显着低于TD参与者。在多元回归分析下,来自aMPFC种子的大脑区域中rs-FC的强度与ASD参与者和TD参与者的AQ得分呈负相关。结论我们的研究结果表明DMN中rs-FC的强度与TD人群以及ASD患者的自闭症谱特征有关,这支持了连续论。 DMD的rs-FCs可能是有用的生物标记物,用于自闭症谱特征的客观鉴定,而与ASD诊断无关。

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