DocumentCode :
3327124
Title :
Deformable image registration by regarding respiratory motion as 1D wave propagation in an elastic medium
Author :
Barnett, Robert ; Meikle, Steven ; Fulton, Roger
Author_Institution :
Fac. of Health Sci., Sydney Univ., Sydney, NSW, Australia
fYear :
2011
fDate :
23-29 Oct. 2011
Firstpage :
2956
Lastpage :
2963
Abstract :
PET/CT attenuation correction factors are derived from the CT image. Difficulties arise in respiratory-gated PET because the attenuation map often needs to be deformed to correct for the non-rigid motion between each gated PET frame. Deformable image registration can be useful for measuring non-rigid motion, however there are some challenges which impact on its accuracy. In this paper we address these issues in noisy gated PET data. We describe an image registration algorithm that satisfies additional constraints arising from the physics of the problem. We represent the lung by a simple mechanical analogue in which a piston drives the lung tissue. Given this model, respiratory motion approximately satisfies a one-dimensional wave equation in the superior-inferior direction. An existing free-form deformation algorithm is modified to impose this constraint. The proposed algorithm for image registration is found to be extremely robust to image noise. Simulations suggest that applying the wave equation constraint is accurate. The resulting images are plausible and the constraints enhance the robustness of the algorithm when applied to clinical respiratory-gated PET.
Keywords :
image registration; medical image processing; positron emission tomography; 1D wave propagation; CT image; PET frame; PET-CT attenuation correction factors; attenuation map; clinical respiratory-gated PET; deformable image registration; elastic medium; free-form deformation algorithm; image registration algorithm; lung tissue; mechanical analogue; noisy gated PET data; nonrigid motion; one-dimensional wave equation; respiratory motion; respiratory-gated PET; superior-inferior direction; Attenuation; Biomedical imaging; Liver; Logic gates; Positron emission tomography; Robustness;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2011 IEEE
Conference_Location :
Valencia
ISSN :
1082-3654
Print_ISBN :
978-1-4673-0118-3
Type :
conf
DOI :
10.1109/NSSMIC.2011.6152528
Filename :
6152528
Link To Document :
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