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Developmental Patterns Based Individualized Panellation of Infant Cortical Surface

机译:基于发育模式的婴儿皮质表面个体化嵌板

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The human cerebral cortex develops dynamically during the early postnatal stage, reflecting the underlying rapid changes of cortical microstruc-tures and their connections, which jointly determine the functional principles of cortical regions. Hence, the dynamic cortical developmental patterns are ideal for defining the distinct cortical regions in microstructure and function for neurodevelopmental studies. Moreover, given the remarkable inter-subject variability in terms of cortical structure/function and their developmental patterns, the individualized cortical parcellation based on each infant's own developmental patterns is critical for precisely localizing personalized distinct cortical regions and also understanding inter-subject variability. To this end, we propose a novel method for individualized parcellation of the infant cortical surface into distinct and meaningful regions based on each individual's cortical developmental patterns. Specifically, to alleviate the effects of cortical measurement errors and also make the individualized cortical parcellation comparable across subjects, we first create a population-based cortical parcellation to capture the general developmental landscape of the cortex in an infant population. Then, this population-based parcellation is leveraged to guide the individualized parcellation based on each infant's own cortical developmental patterns in an iterative manner. At each iteration, the individualized parcellation is gradually updated based on (1) the prior information of the population-based parcellation, (2) the individualized parcellation at the previous iteration, and also (3) the developmental patterns of all vertices. Experiments on fifteen healthy infants, each with longitudinal MRI scans acquired at six time points (i.e., 1, 3, 6, 9, 12 and 18 months of age), show that our method generates a reliable and meaningful individualized cortical parcellation based on each infant's own developmental patterns.
机译:人脑皮质在产后早期动态发展,反映出皮质微结构及其连接的潜在快速变化,共同决定了皮质区域的功能原理。因此,动态皮质发育模式非常适合在神经发育研究的微观结构和功能中定义不同的皮质区域。此外,考虑到皮层结构/功能及其发育模式的显着受试者间变异性,基于每个婴儿自己的发育模式的个性化皮层分隔对于精确定位个性化的不同皮层区域以及理解受试者间变异性至关重要。为此,我们提出了一种新颖的方法,可根据每个人的皮质发育模式将婴儿皮质表面个性化分割为不同且有意义的区域。具体来说,为减轻皮质测量误差的影响,并使个体之间的皮质相融性可比,我们首先创建了一个基于群体的皮质相融性,以捕获婴儿群体中皮质的总体发育情况。然后,利用这种基于人口的分割,以迭代方式基于每个婴儿自己的皮质发育模式来指导个性化分割。在每次迭代时,将基于(1)基于种群的分割的先验信息,(2)先前迭代中的个别化分割以及(3)所有顶点的发展模式逐渐更新个性化分割。在15个健康婴儿中进行的实验(每个人在六个时间点(即1、3、6、9、12和18个月大)进行了纵向MRI扫描)表明,我们的方法基于每个婴儿均产生了可靠且有意义的个性化皮层分隔婴儿自身的发育方式。

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