Mathematical/computational challenges in creating deformable and probabilistic atlases of the human brain
- 16 February 2000
- journal article
- Published by Wiley in Human Brain Mapping
Abstract
Striking variations in brain structure, especially in the gyral patterns of the human cortex, present fundamental challenges in human brain mapping. Probabilistic brain atlases, which encode information on structural and functional variability in large human populations, are powerful research tools with broad applications. Knowledge-based imaging algorithms can also leverage atlased information on anatomic variation. Applications include automated image labeling, pathology detection in individuals or groups, and investigating how regional anatomy is altered in disease, and with age, gender, handedness and other clinical or genetic factors. In this report, we illustrate some of the mathematical challenges involved in constructing population-based brain atlases. A disease-specific atlas is constructed to represent the human brain in Alzheimer's disease (AD). Specialized strategies are developed for population-based averaging of anatomy. Sets of high-dimensional elastic mappings, based on the principles of continuum mechanics, reconfigure the anatomy of a large number of subjects in an anatomic image database. These mappings generate a local encoding of anatomic variability and are used to create a crisp anatomical image template with highly resolved structures in their mean spatial location. Specialized approaches are also developed to average cortical topography. Since cortical patterns are altered in a variety of diseases, gyral pattern matching is used to encode the magnitude and principal directions of local cortical variation. In the resulting cortical templates, subtle features emerge. Regional asymmetries appear that are not apparent in individual anatomies. Population-based maps of cortical variation reveal a mosaic of variability patterns that segregate sharply according to functional specialization and cytoarchitectonic boundaries.Keywords
This publication has 34 references indexed in Scilit:
- Mapping image data to stereotaxic spaces: Applications to brain mappingHuman Brain Mapping, 1998
- Identifying global anatomical differences: Deformation-based morphometryHuman Brain Mapping, 1998
- Hippocampal morphometry in schizophrenia by high dimensional brain mappingProceedings of the National Academy of Sciences, 1998
- Multimodal Image Coregistration and Partitioning—A Unified FrameworkNeuroImage, 1997
- Landmark methods for forms without landmarks: morphometrics of group differences in outline shapeMedical Image Analysis, 1997
- Brainstem, cerebellar and limbic neuroanatomical abnormalities in autismCurrent Opinion in Neurobiology, 1997
- Functional specializations in human cerebral cortex analyzed using the visible man surface-based atlasHuman Brain Mapping, 1997
- Cortical constraints for non-linear cortical registrationLecture Notes in Computer Science, 1996
- Intersubject brain image registration using both cortical and subcortical landmarksPublished by SPIE-Intl Soc Optical Eng ,1995
- “Mini-mental state”: A practical method for grading the cognitive state of patients for the clinicianJournal of Psychiatric Research, 1975