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Age-specific gray and white matter DTI atlas for human brain at 33, 36 and 39 postmenstrual weeks

Authors :
Minhui Ouyang
Qinmu Peng
Hao Huang
Limei Song
Hang Li
Jiaojian Wang
Kenichi Oishi
Lina F. Chalak
Yun Peng
Lizette Lee
Michelle Slinger
Shuwei Liu
Tina Jeon
Virendra Mishra
Roy J. Heyne
Lei Feng
Publication Year :
2018

Abstract

During the 3(rd) trimester, dramatic structural changes take place in the human brain, underlying the neural circuit formation. The survival rate of premature infants has increased significantly in recent years. The large morphological differences of the preterm brain at 33 or 36 postmenstrual weeks (PMW) from the brain at 40PMW (full term) make it necessary to establish age-specific atlases for preterm brains. In this study, with high quality (1.5×1.5×1.6mm(3) imaging resolution) diffusion tensor imaging (DTI) data obtained from 84 healthy preterm and term-born neonates, we established age-specific preterm and term-born brain templates and atlases at 33, 36 and 39PMW. Age-specific DTI templates include a single-subject template, a population-averaged template with linear transformation and a population-averaged template with nonlinear transformation. Each of the age-specific DTI atlases includes comprehensive labeling of 126 major gray matter (GM) and white matter (WM) structures, specifically 52 cerebral cortical structures, 40 cerebral WM structures, 22 brainstem and cerebellar structures and 12 subcortical GM structures. From 33 to 39 PMW, dramatic morphological changes of delineated individual neural structures such as ganglionic eminence and uncinate fasciculus were revealed. The evaluation based on measurements of Dice ratio and L1 error suggested reliable and reproducible automated labels from the age-matched atlases compared to labels from manual delineation. Applying these atlases to automatically and effectively delineate microstructural changes of major WM tracts during the 3(rd) trimester was demonstrated. The established age-specific DTI templates and atlases of 33, 36 and 39 PMW brains may be used for not only understanding the complicated yet precisely organized functional and structural maturational processes but also detecting neural disorder biomarkers of the preterm brains as clinical references.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....d3bf152fe075001d74f6846d6da9ffb4