scholarly journals Delineating Neural Structures of Developmental Human Brains with Diffusion Tensor Imaging

2010 ◽  
Vol 10 ◽  
pp. 135-144 ◽  
Author(s):  
Hao Huang

The human brain anatomy is characterized by dramatic structural changes during fetal development. It is extraordinarily complex and yet its origin is a simple tubular structure. Revealing detailed anatomy at different stages of brain development not only aids in understanding this highly ordered process, but also provides clues to detect abnormalities caused by genetic or environmental factors. However, anatomical studies of human brain development during the fetal period are surprisingly scarce and histology-based atlases have become available only recently. Diffusion tensor imaging (DTI) measures water diffusion to delineate the underlying neural structures. The high contrasts derived from DTI can be used to establish the brain atlas. With DTI tractography, coherent neural structures, such as white matter tracts, can be three-dimensionally reconstructed. The primary eigenvector of the diffusion tensor can be further explored to characterize microstructures in the cerebral wall of the developmental brains. In this mini-review, the application of DTI in order to reveal the structures of developmental fetal brains has been reviewed in the above-mentioned aspects. The fetal brain DTI provides a unique insight for delineating the neural structures in both macroscopic and microscopic levels. The resultant DTI database will provide structural guidance for the developmental study of human fetal brains in basic neuroscience, and reference standards for diagnostic radiology of premature newborns.

US Neurology ◽  
2010 ◽  
Vol 05 (02) ◽  
pp. 89
Author(s):  
Hao Huang ◽  

Human brain anatomy is characterized by dramatic structural changes during fetal development. It is extraordinarily complex and yet its origin is asimple tubular structure. Revealing detailed anatomy at different stages of human fetal brain development not only aids in understanding this highlyordered process, but also provides clues to detect abnormalities caused by genetic or environmental factors. For example, the characterization ofwhite matter axon growth could provide important clues to understanding the inhomegeneity of white matter injuries in cerebral palsy. However,anatomical studies of human brain development during this period are surprisingly scarce, and histology-based atlases have only recently becomeavailable. Diffusion tensor imaging (DTI), a novel method of magnetic resonance imaging (MRI), is capable of delineating anatomical components withhigh contrast and revealing structures at the microscopic level. The volumetric measurement from 3D DTI data can quantify structural growth. Asdiscussed in this article, the fetal brain DTI database will be a valuable resource for human brain developmental study and will provide referencestandards for diagnostic radiology of premature newborns.


2013 ◽  
Vol 44 (S 01) ◽  
Author(s):  
M Breu ◽  
D Reisinger ◽  
D Wu ◽  
Y Zhang ◽  
A Fatemi ◽  
...  

NeuroImage ◽  
2016 ◽  
Vol 124 ◽  
pp. 1125-1130 ◽  
Author(s):  
Lindsay Walker ◽  
Lin-Ching Chang ◽  
Amritha Nayak ◽  
M. Okan Irfanoglu ◽  
Kelly N. Botteron ◽  
...  

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