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弥散张量成像的束特定分析显示自闭症谱系障碍存在广泛的白质损伤。

Tract-specific analyses of diffusion tensor imaging show widespread white matter compromise in autism spectrum disorder.

机构信息

Brain Development Imaging Laboratory, Department of Psychology, San Diego State University, USA.

出版信息

J Child Psychol Psychiatry. 2011 Mar;52(3):286-95. doi: 10.1111/j.1469-7610.2010.02342.x. Epub 2010 Nov 12.

Abstract

BACKGROUND

Previous diffusion tensor imaging (DTI) studies have shown white matter compromise in children and adults with autism spectrum disorder (ASD), which may relate to reduced connectivity and impaired function of distributed networks. However, tract-specific evidence remains limited in ASD. We applied tract-based spatial statistics (TBSS) for an unbiased whole-brain quantitative estimation of the fractional anisotropy (FA), mean diffusion (MD) and axial and radial diffusion of the white matter tracts in children and adolescents with ASD.

METHODS

DTI was performed in 26 ASD and 24 typically developing (TD) participants, aged 9-20 years. Groups were matched for age and IQ. Each participant's aligned FA, MD and axial and radial diffusion data were projected onto the mean FA skeleton representing the centers of all tracts and the resulting data fed into voxelwise group statistics.

RESULTS

TBSS revealed decreased FA and increased MD and radial diffusion in the ASD group compared to the TD group in the corpus callosum, anterior and posterior limbs of the internal capsule, inferior longitudinal fasciculus, inferior fronto-occipital fasciculus, superior longitudinal fasciculus, cingulum, anterior thalamic radiation, and corticospinal tract. No single site with inverse effects (increased FA, reduced MD or radial diffusion in the ASD group) was detected. In clusters of significant group difference, age was positively correlated with FA and negatively correlated with MD and radial diffusion in the TD, but not the ASD group.

CONCLUSIONS

Our findings reveal white matter compromise affecting numerous tracts in children and adolescents with ASD. Slightly varying patterns of diffusion abnormalities detected for some tracts may suggest tract-specific patterns of white matter abnormalities associated with ASD. Age-dependent effects further show that maturational changes (increasing FA, decreasing MD and radial diffusion with age) are diminished in ASD from school-age childhood into young adulthood.

摘要

背景

先前的弥散张量成像(DTI)研究表明,自闭症谱系障碍(ASD)儿童和成人的白质受损,这可能与连接减少和分布式网络功能受损有关。然而,ASD 的束特异性证据仍然有限。我们应用基于束的空间统计学(TBSS)对 ASD 儿童和青少年的白质束的分数各向异性(FA)、平均扩散(MD)和轴向及径向扩散进行无偏的全脑定量估计。

方法

对 26 名 ASD 和 24 名典型发育(TD)参与者进行了 DTI 检查,年龄在 9-20 岁之间。两组在年龄和智商方面相匹配。将每个参与者的对齐 FA、MD 和轴向及径向扩散数据投影到代表所有束中心的平均 FA 骨架上,然后将得到的数据输入到体素级的组统计中。

结果

TBSS 显示,与 TD 组相比,ASD 组胼胝体、内囊前肢和后肢、下纵束、下额枕束、上纵束、扣带回、前丘脑辐射和皮质脊髓束的 FA 降低,MD 和径向扩散增加。未检测到单个部位出现相反的效应(ASD 组 FA 增加,MD 和径向扩散减少)。在有显著组间差异的聚类中,年龄与 TD 组的 FA 呈正相关,与 MD 和径向扩散呈负相关,但在 ASD 组则没有。

结论

我们的发现显示,ASD 儿童和青少年的白质受损影响到许多束。对于一些束,检测到的弥散异常模式略有不同,这可能提示与 ASD 相关的白质异常存在束特异性模式。年龄依赖性效应进一步表明,ASD 从学龄期到青年期,成熟变化(FA 增加,MD 和径向扩散随年龄减少)减少。

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