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Surface fluid registration and multivariate tensor-based morphometry in newborns - the effects of prematurity on the putamen

机译:新生儿的表面液配准和基于多张量的形态测定法-早产对壳核的影响

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Many disorders that affect the brain can cause shape changes in subcortical structures, and these may provide biomarkers for disease detection and progression. Automatic tools are needed to accurately identify and characterize these alterations. In recent work, we developed a surface multivariate tensor-based morphometry analysis (mTBM) to detect morphological group differences in subcortical structures, and we applied this method to study HIV/AIDS, William's syndrome, Alzheimer's disease and prematurity. Here we will focus more specifically on mTBM in neonates, which, in its current form, starts with manually segmented subcortical structures from MRI images of a two subject groups, places a conformal grid on each of their surfaces, registers them to a template through a constrained harmonic map and provides statistical comparisons between the two groups, at each vertex of the template grid. We improve this pipeline in two ways: first by replacing the constrained harmonic map with a new fluid registration algorithm that we recently developed. Secondly, by optimizing the pipeline to study the putamen in newborns.
机译:许多影响大脑的疾病会导致皮质下结构的形状变化,这些可能为疾病检测和进展提供生物标记。需要使用自动工具来准确地识别和表征这些更改。在最近的工作中,我们开发了基于表面多变量张量的形态学分析(mTBM),以检测皮层下结构的形态学组别差异,并将此方法用于研究HIV / AIDS,威廉综合征,阿尔茨海默氏病和早产。在这里,我们将更具体地关注新生儿的mTBM,以目前的形式,它是从两个受试者组的MRI图像中手动分割皮质下的结构开始,在它们的每个表面上放置一个共形网格,然后通过约束谐波图,并在模板网格的每个顶点处提供两组之间的统计比较。我们以两种方式改进该管道:首先通过用我们最近开发的新的流体配准算法替换约束谐波图。其次,通过优化研究新生儿壳核的管道。

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