Title :
An improved 2D-3D medical image registration algorithm based on modified mutual information and expanded Powell method
Author :
Yang Lei ; Yan Zhang
Author_Institution :
Shenzhen Grad. Sch., Harbin Inst. of Technol., Shenzhen, China
Abstract :
An accurate two-dimensional-three-dimensional (2D-3D) image registration method is introduced in this paper, which is used in image-guided surgery to detect and correct patient movement during image-guided intervention treatment. In this paper, we decompose a 3D rigid transformation in the 3D patient coordinate into in-plane transformations and out-of-plane rotations in two orthogonal 2D projections, using approximate geometric relationship and the results in the two projections are then combined and converted to a 3D rigid transformation by 2D-3D geometric transformation. In order to ensure accuracy, we propose that using mutual information based on partial volume interpolation as a similarity measure to align Digitally Reconstructed Radiographs(DRRs) from original 3D CT volume and x-ray images. In the refined stage, we use expanded Powell method to search for the refined parameters. Our experiments show that it is feasible of the assessed 2D-3D registration algorithm, since it achieves sub-millimeter accuracy, when modified mutual information and expanded Powell search method are used.
Keywords :
computerised tomography; diagnostic radiography; image motion analysis; image reconstruction; image registration; interpolation; medical image processing; surgery; 2D-3D geometric transformation; 2D-3D registration algorithm; 3D patient coordinate; 3D rigid transformation; DRR; Digitally Reconstructed Radiographs; X-ray images; approximate geometric relationship; expanded Powell search method; image-guided intervention treatment; image-guided surgery; in-plane transformations; modified mutual information; original 3D CT volume; orthogonal 2D projections; out-of-plane rotations; partial volume interpolation; patient movement correction; patient movement detection; refined parameter; refined stage; similarity measure; submillimeter accuracy; two-dimensional-three-dimensional image registration method; Accuracy; Biomedical imaging; Image registration; Interpolation; Mutual information; Three-dimensional displays; X-ray imaging; 2D-3D image registration; DRRs; accuracy; expanded Powell method; mutual information; partial volume interpolation; x-ray images;
Conference_Titel :
Medical Imaging Physics and Engineering (ICMIPE), 2013 IEEE International Conference on
Conference_Location :
Shenyang
Print_ISBN :
978-1-4799-6305-8
DOI :
10.1109/ICMIPE.2013.6864496