Title :
Incorporating a measure of local scale in voxel-based 3-D image registration
Author :
Nyul, Laszlo G. ; Udupa, Jayaram K. ; Saha, Punam K.
Author_Institution :
Dept. of Appl. Informatics, Univ. of Szeged, Hungary
Abstract :
We present a new class of approaches for rigid-body registration and their evaluation in studying multiple sclerosis (MS) via multiprotocol magnetic resonance imaging (MRI). Three pairs of rigid-body registration algorithms were implemented, using cross-correlation and mutual information (MI), operating on original gray-level images, and utilizing the intermediate images resulting from our new scale-based method. In the scale image, every voxel has the local "scale" value assigned to it, defined as the radius of the largest ball centered at the voxel with homogeneous intensities. Three-dimensional image data of the head were acquired from ten MS patients for each of six MRI protocols. Images in some of the protocols were acquired in registration. The registered pairs were used as ground truth. Accuracy and consistency of the six registration methods were measured within and between protocols for known amounts of misregistrations. Our analysis indicates that there is no "best" method. For medium misregistration, the method using MI, for small and large misregistration the method using normalized cross-correlation performs best. For high-resolution data the correlation method and for low-resolution data the MI method, both using the original gray-level images, are the most consistent. We have previously demonstrated the use of local scale information in fuzzy connectedness segmentation and image filtering. Scale may also have potential for image registration as suggested by this work.
Keywords :
biomedical MRI; brain; diseases; image registration; image resolution; medical image processing; MRI; MRI protocols; accuracy; consistency; cross-correlation; fuzzy connectedness segmentation; gray-level images; ground truth; head; high-resolution data; homogeneous intensities; image filtering; intermediate images; local scale; local scale value; low-resolution data; misregistrations; multiple sclerosis; multiprotocol magnetic resonance imaging; mutual information; normalized cross-correlation; rigid-body registration algorithms; scale image; scale-based method; three-dimensional image data; voxel; voxel-based 3D image registration; Correlation; Image registration; Image segmentation; Information filtering; Information filters; Magnetic heads; Magnetic resonance imaging; Multiple sclerosis; Mutual information; Protocols; Adult; Algorithms; Brain; Female; Humans; Image Enhancement; Image Interpretation, Computer-Assisted; Imaging, Three-Dimensional; Male; Middle Aged; Multiple Sclerosis; Reproducibility of Results; Sensitivity and Specificity; Signal Processing, Computer-Assisted; Statistics as Topic; Subtraction Technique;
Journal_Title :
Medical Imaging, IEEE Transactions on
DOI :
10.1109/TMI.2002.808358