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皮质区和厚度的联合分析可替代大脑皮质体积的分析。

Joint Analysis of Cortical Area and Thickness as a Replacement for the Analysis of the Volume of the Cerebral Cortex.

机构信息

Oxford Centre for Functional MRI of the Brain, Nuffield Department of Clinical Neurosciences, University of Oxford, Oxford OX3 9DU, UK.

Department of Psychiatry, Yale University School of Medicine, New Haven, CT 06511, USA.

出版信息

Cereb Cortex. 2018 Feb 1;28(2):738-749. doi: 10.1093/cercor/bhx308.

Abstract

Cortical surface area is an increasingly used brain morphology metric that is ontogenetically and phylogenetically distinct from cortical thickness and offers a separate index of neurodevelopment and disease. However, the various existing methods for assessment of cortical surface area from magnetic resonance images have never been systematically compared. We show that the surface area method implemented in FreeSurfer corresponds closely to the exact, but computationally more demanding, mass-conservative (pycnophylactic) method, provided that images are smoothed. Thus, the data produced by this method can be interpreted as estimates of cortical surface area, as opposed to areal expansion. In addition, focusing on the joint analysis of thickness and area, we compare an improved, analytic method for measuring cortical volume to a permutation-based nonparametric combination (NPC) method. We use the methods to analyze area, thickness and volume in young adults born preterm with very low birth weight, and show that NPC analysis is a more sensitive option for studying joint effects on area and thickness, giving equal weight to variation in both of these 2 morphological features.

摘要

皮质表面积是一种越来越常用的脑形态学指标,它在个体发生和系统发生上与皮质厚度不同,是神经发育和疾病的独立指标。然而,从磁共振图像评估皮质表面积的各种现有方法从未被系统地比较过。我们表明,在 FreeSurfer 中实现的表面积方法与精确的、但计算要求更高的、质量守恒(质密)方法非常吻合,只要图像是平滑的。因此,该方法产生的数据可以被解释为皮质表面积的估计值,而不是面积的扩张。此外,我们重点关注厚度和面积的联合分析,将一种用于测量皮质体积的改进的分析方法与基于置换的非参数组合(NPC)方法进行比较。我们使用这些方法分析了极低出生体重早产儿的成年早期的面积、厚度和体积,并表明 NPC 分析是研究面积和厚度联合效应的更敏感选择,对这两个形态特征的变化给予同等重视。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9cb/5972607/16b2ba02026b/bhx308f01.jpg

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