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Chapter
Radiology
Neuroimaging is a key tool in evaluating and diagnosing those disorders of the craniocervical junction known as “Chiari malformations.” Although linked by their name, these are very different disorders, linked...
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Chapter and Conference Paper
NEOCIVET: Extraction of Cortical Surface and Analysis of Neonatal Gyrification Using a Modified CIVET Pipeline
Cerebral cortical gyration becomes dramatically more complex in the fetal brain during the 3rd trimester of gestation; the process proceeds in a similar fashion ex utero in children who are born prematurely. To q...
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Chapter and Conference Paper
Spatiotemporal Morphometry of Adjacent Tissue Layers with Application to the Study of Sulcal Formation
The process of brain growth involves the expansion of tissue at different rates at different points within the brain. As the layers within the develo** brain evolve they can thicken or increase in area as th...
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Chapter and Conference Paper
Measures for Characterizing Directionality Specific Volume Changes in TBM of Brain Growth
Tensor based morphology (TBM) is a powerful approach to analyze local structural changes in brain anatomy. However, conventional scalar TBM methods are unable to present direction-specific analysis of volume c...
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Chapter
Modern Neuroimaging of Pediatric Brain Tumors
Neuroimaging has been an important tool in the diagnosis and surveillance of brain tumors for more than 30 years. Although magnetic resonance (MR) imaging remains the most important imaging tool for assessing ...
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Chapter and Conference Paper
A Spatio-temporal Atlas of the Human Fetal Brain with Application to Tissue Segmentation
Modeling and analysis of MR images of the early develo** human brain is a challenge because of the transient nature of different tissue classes during brain growth. To address this issue, a statistical model...
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Chapter and Conference Paper
Atlas-Based Segmentation of the Germinal Matrix from in Utero Clinical MRI of the Fetal Brain
Recently developed techniques for reconstruction of high-resolution 3D images from fetal MR scans allows us to study the morphometry of develo** brain tissues in utero. However, existing adult brain analysis...