DocumentCode :
123895
Title :
Accelerating Volume Image Registration through Correlation Ratio Based Methods on GPUs
Author :
Ang Li ; Kumar, Ajit
Author_Institution :
Nat. Univ. of Singapore, Singapore, Singapore
fYear :
2014
fDate :
27-29 Aug. 2014
Firstpage :
82
Lastpage :
89
Abstract :
Volume image registration is a basic component of medical image processing which traditionally requires long computation time. In this paper, we propose five Correlation Ratio based schemes that explore the design space for Graphics Processing Unit (GPU) acceleration. Through comparisons among these five schemes, we present the trade-off between benefits and overheads of introducing shadow histograms on various storage (shared memory, global memory) by different level execution units (thread, warp, thread block). Compared to Mutual Information based methods, these Correlation Ratio based methods require less resources for shadow histograms, a faster storage therefore could be exploited to achieve better performance which is shown in our experiments. Particularly, the fifth scheme completely avoids updating conflicts of histogram calculation, leading to a substantial performance improvement (over 18x speedup) over the native FLIRT version. It reduces the registration time from over 100s to less than 6s for two typical 256x256x160 3D images.
Keywords :
graphics processing units; image registration; medical image processing; statistical analysis; storage management; GPU acceleration; correlation ratio based methods; global memory; graphics processing unit; medical image processing; mutual information based methods; shadow histograms; shared memory; thread block execution; thread execution; volume image registration; warp execution; Cost function; Graphics processing units; Histograms; Image registration; Instruction sets; Radiation detectors; Transforms; GPU; Registration;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Digital System Design (DSD), 2014 17th Euromicro Conference on
Conference_Location :
Verona
Type :
conf
DOI :
10.1109/DSD.2014.29
Filename :
6927230
Link To Document :
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