DocumentCode
946600
Title
Surface-Constrained Volumetric Brain Registration Using Harmonic Mappings
Author
Joshi, Anand A. ; Shattuck, David W. ; Thompson, Paul M. ; Leahy, Richard M.
Author_Institution
Univ. of Southern California, Los Angeles
Volume
26
Issue
12
fYear
2007
Firstpage
1657
Lastpage
1669
Abstract
In order to compare anatomical and functional brain imaging data across subjects, the images must first be registered to a common coordinate system in which anatomical features are aligned. Intensity-based volume registration methods can align subcortical structures well, but the variability in sulcal folding patterns typically results in misalignment of the cortical surface. Conversely, surface-based registration using sulcal features can produce excellent cortical alignment but the mapping between brains is restricted to the cortical surface. Here we describe a method for volumetric registration that also produces an accurate one-to-one point correspondence between cortical surfaces. This is achieved by first parameterizing and aligning the cortical surfaces using sulcal landmarks. We then use a constrained harmonic mapping to extend this surface correspondence to the entire cortical volume. Finally, this mapping is refined using an intensity-based warp. We demonstrate the utility of the method by applying it to T1-weighted magnetic resonance images (MRIs). We evaluate the performance of our proposed method relative to existing methods that use only intensity information; for this comparison we compute the intersubject alignment of expert-labeled subcortical structures after registration.
Keywords
biomedical MRI; brain; image registration; medical image processing; MRI; T1-weighted magnetic resonance images; anatomical features; functional brain imaging; harmonic mappings; image registration; subcortical structures; sulcal folding patterns; surface-constrained volumetric brain registration; Brain mapping; Image Registration; brain mappig; deformable registration; harmonic mapping; image registration; Algorithms; Artifacts; Artificial Intelligence; Brain; Brain Mapping; Finite Element Analysis; Humans; Image Enhancement; Imaging, Three-Dimensional; Magnetic Resonance Imaging; Models, Neurological; Numerical Analysis, Computer-Assisted; Pattern Recognition, Automated; Reproducibility of Results; Sensitivity and Specificity; Subtraction Technique;
fLanguage
English
Journal_Title
Medical Imaging, IEEE Transactions on
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/TMI.2007.901432
Filename
4359029
Link To Document