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量化每个皮质顶点处短程和长程白质连通性的指标。

Quantifying indices of short- and long-range white matter connectivity at each cortical vertex.

作者信息

Padula Maria Carmela, Schaer Marie, Scariati Elisa, Mutlu A Kadir, Zöller Daniela, Schneider Maude, Eliez Stephan

机构信息

Developmental Imaging and Psychopathology Laboratory, University of Geneva School of medicine, Geneva, Switzerland.

Neuro-Electronics Research Flanders, Leuven, The Netherlands.

出版信息

PLoS One. 2017 Nov 15;12(11):e0187493. doi: 10.1371/journal.pone.0187493. eCollection 2017.

Abstract

Several neurodevelopmental diseases are characterized by impairments in cortical morphology along with altered white matter connectivity. However, the relationship between these two measures is not yet clear. In this study, we propose a novel methodology to compute and display metrics of white matter connectivity at each cortical point. After co-registering the extremities of the tractography streamlines with the cortical surface, we computed two measures of connectivity at each cortical vertex: the mean tracts' length, and the proportion of short- and long-range connections. The proposed measures were tested in a clinical sample of 62 patients with 22q11.2 deletion syndrome (22q11DS) and 57 typically developing individuals. Using these novel measures, we achieved a fine-grained visualization of the white matter connectivity patterns at each vertex of the cortical surface. We observed an intriguing pattern of both increased and decreased short- and long-range connectivity in 22q11DS, that provides novel information about the nature and topology of white matter alterations in the syndrome. We argue that the method presented in this study opens avenues for additional analyses of the relationship between cortical properties and patterns of underlying structural connectivity, which will help clarifying the intrinsic mechanisms that lead to altered brain structure in neurodevelopmental disorders.

摘要

几种神经发育疾病的特征是皮质形态受损以及白质连接性改变。然而,这两种测量方法之间的关系尚不清楚。在本研究中,我们提出了一种新颖的方法来计算和显示每个皮质点的白质连接性指标。在将纤维束成像流线的末端与皮质表面进行配准后,我们计算了每个皮质顶点的两种连接性测量值:平均纤维束长度以及短程和长程连接的比例。在一个包含62名22q11.2缺失综合征(22q11DS)患者和57名发育正常个体的临床样本中对所提出的测量方法进行了测试。使用这些新颖的测量方法,我们实现了对皮质表面每个顶点的白质连接模式的细粒度可视化。我们在22q11DS中观察到了一种短程和长程连接性增加和减少的有趣模式,这为该综合征中白质改变的性质和拓扑结构提供了新信息。我们认为,本研究中提出的方法为进一步分析皮质特性与潜在结构连接模式之间的关系开辟了道路,这将有助于阐明导致神经发育障碍中脑结构改变的内在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95dd/5687731/2ef7807b837b/pone.0187493.g001.jpg

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