DocumentCode
55177
Title
On Removing Interpolation and Resampling Artifacts in Rigid Image Registration
Author
Aganj, Iman ; Yeo, B.T.T. ; Sabuncu, Mert R. ; Fischl, Bradley
Author_Institution
Med. Sch., Athinoula A. Martinos Center for Biomed. Imaging, Harvard Univ., Charlestown, MA, USA
Volume
22
Issue
2
fYear
2013
fDate
Feb. 2013
Firstpage
816
Lastpage
827
Abstract
We show that image registration using conventional interpolation and summation approximations of continuous integrals can generally fail because of resampling artifacts. These artifacts negatively affect the accuracy of registration by producing local optima, altering the gradient, shifting the global optimum, and making rigid registration asymmetric. In this paper, after an extensive literature review, we demonstrate the causes of the artifacts by comparing inclusion and avoidance of resampling analytically. We show the sum-of-squared-differences cost function formulated as an integral to be more accurate compared with its traditional sum form in a simple case of image registration. We then discuss aliasing that occurs in rotation, which is due to the fact that an image represented in the Cartesian grid is sampled with different rates in different directions, and propose the use of oscillatory isotropic interpolation kernels, which allow better recovery of true global optima by overcoming this type of aliasing. Through our experiments on brain, fingerprint, and white noise images, we illustrate the superior performance of the integral registration cost function in both the Cartesian and spherical coordinates, and also validate the introduced radial interpolation kernel by demonstrating the improvement in registration.
Keywords
approximation theory; image registration; image sampling; interpolation; Cartesian coordinates; Cartesian grid; artifact resampling; continuous integral summation approximations; integral registration cost function; local optima; oscillatory isotropic interpolation kernels; radial interpolation kernel; rigid image registration; spherical coordinates; sum-of-squared-differences cost function; white noise images; Biomedical imaging; Cost function; Frequency domain analysis; Image registration; Interpolation; Kernel; Low pass filters; Aliasing; image registration; image resampling; interpolation artifacts; Algorithms; Artifacts; Brain; Dermatoglyphics; Humans; Image Processing, Computer-Assisted; Magnetic Resonance Imaging;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/TIP.2012.2224356
Filename
6329438
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