胎儿大脑结构性协方差网络揭示先天性心脏病特定亚型的神经发育改变

IF 5 1区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS Journal of the American Heart Association Pub Date : 2024-11-05 Epub Date: 2024-10-25 DOI:10.1161/JAHA.124.035880
Siân Wilson, Daniel Cromb, Alexandra F Bonthrone, Alena Uus, Anthony Price, Alexia Egloff, Milou P M Van Poppel, Johannes K Steinweg, Kuberan Pushparajah, John Simpson, David F A Lloyd, Reza Razavi, Jonathan O'Muircheartaigh, A David Edwards, Joseph V Hajnal, Mary Rutherford, Serena J Counsell
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引用次数: 0

摘要

背景:在患有先天性心脏病(CHD)的胎儿中发现了脑结构发育的改变,这表明日后观察到的神经发育障碍可能起源于子宫内。有许多相互作用的因素可能会扰乱胎儿时期的神经发育,并表现为大脑结构的改变,如脑底物输送的改变和胎儿血流动力学的异常:我们从 435 个宫内 T2 加权图像磁共振成像扫描(n=67 个对照组,368 个患有先天性心脏病的对照组)的对数雅各布决定因素中提取了结构协方差网络。我们拟合了一般线性模型,以检验年龄、性别、预期脑基质分娩和先天性心脏病诊断是否是结构协方差的重要预测因素。我们确定了年龄、性别、脑基质输送和特定CHD诊断对各种结构协方差网络的显着影响,包括初级运动和感觉皮层、小脑区、额叶皮层、轴外脑脊液、丘脑、脑干和岛叶,这与特定脑区在妊娠三个月内的广泛协调异常成熟是一致的:结构协方差网络提供了一种灵敏的、数据驱动的方法,无需解剖学先验即可探索全脑结构变化。我们利用结构协方差网络对患有先天性心脏病的异质患者队列进行了分层,突出了不同诊断在胎儿神经发育过程中的异同。虽然胎儿血流动力学异常对大脑结构成熟有明显的影响,但我们的结果表明,仅凭这一点并不能解释先天性心脏病患者之间大脑发育的所有差异。
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Structural Covariance Networks in the Fetal Brain Reveal Altered Neurodevelopment for Specific Subtypes of Congenital Heart Disease.

Background: Altered structural brain development has been identified in fetuses with congenital heart disease (CHD), suggesting that the neurodevelopmental impairment observed later in life might originate in utero. There are many interacting factors that may perturb neurodevelopment during the fetal period and manifest as structural brain alterations, such as altered cerebral substrate delivery and aberrant fetal hemodynamics.

Methods and results: We extracted structural covariance networks from the log Jacobian determinants of 435 in utero T2 weighted image magnetic resonance imaging scans, (n=67 controls, 368 with CHD) acquired during the third trimester. We fit general linear models to test whether age, sex, expected cerebral substrate delivery, and CHD diagnosis were significant predictors of structural covariance. We identified significant effects of age, sex, cerebral substrate delivery, and specific CHD diagnosis across a variety of structural covariance networks, including primary motor and sensory cortices, cerebellar regions, frontal cortex, extra-axial cerebrospinal fluid, thalamus, brainstem, and insula, consistent with widespread coordinated aberrant maturation of specific brain regions over the third trimester.

Conclusions: Structural covariance networks offer a sensitive, data-driven approach to explore whole-brain structural changes without anatomical priors. We used them to stratify a heterogenous patient cohort with CHD, highlighting similarities and differences between diagnoses during fetal neurodevelopment. Although there was a clear effect of abnormal fetal hemodynamics on structural brain maturation, our results suggest that this alone does not explain all the variation in brain development between individuals with CHD.

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来源期刊
Journal of the American Heart Association
Journal of the American Heart Association CARDIAC & CARDIOVASCULAR SYSTEMS-
CiteScore
9.40
自引率
1.90%
发文量
1749
审稿时长
12 weeks
期刊介绍: As an Open Access journal, JAHA - Journal of the American Heart Association is rapidly and freely available, accelerating the translation of strong science into effective practice. JAHA is an authoritative, peer-reviewed Open Access journal focusing on cardiovascular and cerebrovascular disease. JAHA provides a global forum for basic and clinical research and timely reviews on cardiovascular disease and stroke. As an Open Access journal, its content is free on publication to read, download, and share, accelerating the translation of strong science into effective practice.
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