DocumentCode :
686610
Title :
Experimental evaluation of a deformable registration algorithm for motion correction in PET-CT guided biopsy
Author :
Khare, Rahul ; Sala, Guillaume ; Kinahan, Paul ; Esposito, G. ; Banovac, Filip ; Cleary, K. ; Enquobahrie, A.
Author_Institution :
Children´s Nat. Med. Center, Washington, DC, USA
fYear :
2013
fDate :
Oct. 27 2013-Nov. 2 2013
Firstpage :
1
Lastpage :
5
Abstract :
Positron emission tomography computed tomography (PET-CT) images are increasingly being used for guidance during percutaneous biopsy. However, due to the physics of image acquisition, PET-CT images are susceptible to problems due to respiratory and cardiac motion, leading to inaccurate tumor localization, shape distortion, and attenuation correction. To address these problems, we present a method for motion correction that relies on respiratory gated CT images aligned using a deformable registration algorithm. In this work, we use two deformable registration algorithms and two optimization approaches for registering the CT images obtained over the respiratory cycle. The two algorithms are the BSpline and the symmetric forces Demons registration. In the first optmization approach, CT images at each time point are registered to a single reference time point. In the second approach, deformation maps are obtained to align each CT time point with its adjacent time point. These deformations are then composed to find the deformation with respect to a reference time point. We evaluate these two algorithms and optimization approaches using respiratory gated CT images obtained from 7 patients. Our results show that overall the BSpline registration algorithm with the reference optimization approach gives the best results.
Keywords :
cardiology; computerised tomography; data acquisition; deformation; image registration; medical image processing; motion compensation; optimisation; pneumodynamics; positron emission tomography; splines (mathematics); surgery; tumours; B-spline registration algorithm; CT image registration; CT time point alignment; PET-CT guided biopsy; attenuation correction; cardiac motion effect; deformable registration algorithm; deformation maps; image acquisition; inaccurate tumor localization; motion correction; percutaneous biopsy guidance; positron emission tomography-computed tomography images; reference optimization approach; respiratory cycle; respiratory gated CT image alignment; respiratory motion effect; shape distortion; single reference time point; symmetric force demon registration algorithms; Biopsy; Computed tomography; Lungs; Optimization; Positron emission tomography; Splines (mathematics); PET-CT; deformable registration; image-guided surgery; motion correction;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2013 IEEE
Conference_Location :
Seoul
Print_ISBN :
978-1-4799-0533-1
Type :
conf
DOI :
10.1109/NSSMIC.2013.6829037
Filename :
6829037
Link To Document :
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