DocumentCode :
65155
Title :
A New Fast Accurate Nonlinear Medical Image Registration Program Including Surface Preserving Regularization
Author :
Gruslys, Audrunas ; Acosta-Cabronero, Julio ; Nestor, Peter J. ; Williams, Guy B. ; Ansorge, Richard E.
Author_Institution :
Cavendish Lab., Cambridge Univ., Cambridge, UK
Volume :
33
Issue :
11
fYear :
2014
fDate :
Nov. 2014
Firstpage :
2118
Lastpage :
2127
Abstract :
Recently inexpensive graphical processing units (GPUs) have become established as a viable alternative to traditional CPUs for many medical image processing applications. GPUs offer the potential of very significant improvements in performance at low cost and with low power consumption. One way in which GPU programs differ from traditional CPU programs is that increasingly elaborate calculations per voxel may not impact of the overall processing time because memory accesses can dominate execution time. This paper presents a new GPU based elastic image registration program named Ezys. The Ezys image registration algorithm belongs to the wide class of diffeomorphic demons but uses surface preserving image smoothing and regularization filters designed for a GPU that would be computationally expensive on a CPU. We describe the methods used in Ezys and present results from two important neuroscience applications. Firstly inter-subject registration for transfer of anatomical labels and secondly longitudinal intra-subject registration to quantify atrophy in individual subjects. Both experiments showed that Ezys registration compares favorably with other popular elastic image registration programs. We believe Ezys is a useful tool for neuroscience and other applications, and also demonstrates the value of developing of novel image processing filters specifically designed for GPUs.
Keywords :
graphics processing units; image registration; medical image processing; neurophysiology; Ezys image registration algorithm; GPU programs; anatomical label transfer; atrophy; diffeomorphic demons; elastic image registration programs; execution time; graphical processing units; image processing filters; intersubject registration; longitudinal intrasubject registration; low power consumption; medical image processing applications; neuroscience applications; nonlinear medical image registration program; overall processing time; regularization filters; surface preserving image smoothing; surface preserving regularization; traditional CPU programs; Biomedical imaging; Filtering algorithms; Graphics processing units; Image registration; Jacobian matrices; Smoothing methods; Surface treatment; Deformable registration; demons algorithms; graphics processors; medical image analysis; multi-core processing;
fLanguage :
English
Journal_Title :
Medical Imaging, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0062
Type :
jour
DOI :
10.1109/TMI.2014.2332370
Filename :
6841618
Link To Document :
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