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Applying microstructural models to understand the role of white matter in cognitive development

机译:应用微观结构模型了解白质在认知发展中的作用

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Diffusion MRI (dMRI) holds great promise for illuminating the biological changes that underpin cognitive development. The diffusion of water molecules probes the cellular structure of brain tissue, and biophysical modeling of the diffusion signal can be used to make inferences about specific tissue properties that vary over development or predict cognitive performance. However, applying these models to study development requires that the parameters can be reliably estimated given the constraints of data collection with children. Here we collect repeated scans using a typical multi-shell diffusion MRI protocol in a group of children (ages 7–12) and use two popular modeling techniques to examine individual differences in white matter structure. We first assess scan-rescan reliability of model parameters and show that axon water faction can be reliably estimated from a relatively fast acquisition, without applying spatial smoothing or de-noising. We then investigate developmental changes in the white matter, and individual differences that correlate with reading skill. Specifically, we test the hypothesis that previously reported correlations between reading skill and diffusion anisotropy in the corpus callosum reflect increased axon water fraction in poor readers. Both models support this interpretation, highlighting the utility of these approaches for testing specific hypotheses about cognitive development.
机译:扩散MRI(dMRI)在阐明支撑认知发展的生物学变化方面具有广阔的前景。水分子的扩散探测了脑组织的细胞结构,扩散信号的生物物理模型可用于推断随着发展变化或预测认知表现的特定组织特性。但是,将这些模型应用到研究开发中需要考虑到有儿童的数据收集的限制,才能可靠地估计参数。在这里,我们使用一组典型的多壳扩散MRI协议对一组儿童(7至12岁)进行重复扫描,并使用两种流行的建模技术来检查白质结构的个体差异。我们首先评估模型参数的扫描-再扫描可靠性,并表明可以从相对快速的采集中可靠地估计轴突水的派别,而无需应用空间平滑或去噪。然后,我们调查白质的发育变化以及与阅读技巧相关的个体差异。具体而言,我们检验了以下假设:先前报道的阅读技巧与diffusion体扩散各向异性之间的相关性反映了不良阅读者中轴突水分含量的增加。两种模型都支持这种解释,突出了这些方法在检验有关认知发展的特定假设方面的实用性。

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