30-73岁自闭症成人经胼胝体白质和皮层灰质的变化。

IF 6.3 1区 医学 Q1 GENETICS & HEREDITY
Young Seon Shin, Danielle Christensen, Jingying Wang, Desirae J Shirley, Ann-Marie Orlando, Regilda A Romero, David E Vaillancourt, Bradley J Wilkes, Stephen A Coombes, Zheng Wang
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引用次数: 0

摘要

背景:自闭症谱系障碍(ASD)是一种严重影响健康、独立性和生活质量的终身疾病。然而,对自闭症成人大脑衰老的研究是有限的,白质和灰质的微观结构变化仍然知之甚少。为了解决这一关键差距,我们评估了中老年自闭症成年人的32个经胼胝体束及其相应的同源灰质起源/终点兴趣区(roi)的新型弥散MRI (dMRI)生物标志物、自由水、自由水校正分数各向异性(fwcFA)和平均弥散性(fwcMD)。方法:43名年龄在30-73岁之间的自闭症成年人和43名年龄、性别和智商匹配的神经典型对照进行了dMRI扫描。我们检查了两组之间的游离水、fwcFA、fwcMD差异,以及每组全脑每个dMRI指标的年龄相关模式。研究还探讨了自闭症成人与神经正常对照显著区游离水与ASD临床指标之间的关系。在补充分析中,我们还使用传统的单张量模型评估了未校正的游离水FA和MD。结果:与对照组相比,自闭症成人在七个额叶经胼胝体束中表现出显著升高的游离水。在对照组中,在大多数经胼胝体束中观察到与年龄相关的游离水增加和fwcFA减少。然而,这些与年龄相关的模式在自闭症成年人中完全不存在。在灰质方面,与对照组相比,自闭症成人的肌钙化皮层的游离水升高,背侧运动前皮层的fwcMD降低。最后,在神经正常对照的所有白质和灰质roi中发现了与年龄相关的自由水的增加,而在自闭症成年人的任何dMRI指标中都没有检测到与年龄相关的关联。局限性:我们只招募了有认知能力的自闭症成年人,这限制了我们的研究结果在整个自闭症谱系中的普遍性。横断面设计排除了中老年自闭症成人随时间的微观结构变化的推论。结论:我们的研究结果揭示了自闭症成人额叶白质的游离水负荷增加,并确定了两组之间明显与年龄相关的微观结构差异。这些发现突出了自闭症成年人大脑衰老的异质性。我们的研究也证明了定量游离水在ASD的dMRI研究中的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transcallosal white matter and cortical gray matter variations in autistic adults aged 30-73 years.

Background: Autism spectrum disorder (ASD) is a lifelong condition that profoundly impacts health, independence, and quality of life. However, research on brain aging in autistic adults is limited, and microstructural variations in white and gray matter remain poorly understood. To address this critical gap, we assessed novel diffusion MRI (dMRI) biomarkers, free water, and free water corrected fractional anisotropy (fwcFA), and mean diffusivity (fwcMD) across 32 transcallosal tracts and their corresponding homotopic grey matter origin/endpoint regions of interest (ROIs) in middle and old aged autistic adults.

Methods: Forty-three autistic adults aged 30-73 and 43 age-, sex-, and IQ-matched neurotypical controls underwent dMRI scans. We examined free water, fwcFA, fwcMD differences between the two groups and age-related pattern of each dMRI metric across the whole brain for each group. The relationships between clinical measures of ASD and free water in regions that significantly differentiated autistic adults from neurotypical controls were also explored. In supplementary analyses, we also assessed free water uncorrected FA and MD using conventional single tensor modeling.

Results: Autistic adults exhibited significantly elevated free water in seven frontal transcallosal tracts compared to controls. In controls, age-related increases in free water and decreases in fwcFA were observed across most transcallosal tracts. However, these age-associated patterns were entirely absent in autistic adults. In gray matter, autistic adults showed elevated free water in the calcarine cortices and lower fwcMD in the dorsal premotor cortices compared to controls. Lastly, age-related increases in free water were found across all white matter and gray matter ROIs in neurotypical controls, whereas no age-related associations were detected in any dMRI metrics for autistic adults.

Limitations: We only recruited cognitively capable autistic adults, which limits the generalizability of our findings across the full autism spectrum. The cross-sectional design precludes inferences about microstructural changes over time in middle and old aged autistic adults.

Conclusions: Our findings revealed increased free water load in frontal white matter in autistic adults and identified distinct age-associated microstructural variations between the two groups. These findings highlight more heterogeneous brain aging profiles in autistic adults. Our study also demonstrated the importance of quantifying free water in dMRI studies of ASD.

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来源期刊
Molecular Autism
Molecular Autism GENETICS & HEREDITY-NEUROSCIENCES
CiteScore
12.10
自引率
1.60%
发文量
44
审稿时长
17 weeks
期刊介绍: Molecular Autism is a peer-reviewed, open access journal that publishes high-quality basic, translational and clinical research that has relevance to the etiology, pathobiology, or treatment of autism and related neurodevelopmental conditions. Research that includes integration across levels is encouraged. Molecular Autism publishes empirical studies, reviews, and brief communications.
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