Title :
Oriented Gaussian Mixture Models for Nonrigid 2D/3D Coronary Artery Registration
Author :
Baka, N. ; Metz, C.T. ; Schultz, C.J. ; van Geuns, R.-J. ; Niessen, Wiro J. ; van Walsum, Theo
Author_Institution :
Depts. of Med. Inf. & Radiol., Erasmus MC - Univ. Med. Center Rotterdam, Rotterdam, Netherlands
Abstract :
2D/3D registration of patient vasculature from preinterventional computed tomography angiography (CTA) to interventional X-ray angiography is of interest to improve guidance in percutaneous coronary interventions. In this paper we present a novel feature based 2D/3D registration framework, that is based on probabilistic point correspondences, and show its usefulness on aligning 3D coronary artery centerlines derived from CTA images with their 2D projection derived from interventional X-ray angiography. The registration framework is an extension of the Gaussian mixture model (GMM) based point-set registration to the 2D/3D setting, with a modified distance metric. We also propose a way to incorporate orientation in the registration, and show its added value for artery registration on patient datasets as well as in simulation experiments. The oriented GMM registration achieved a median accuracy of 1.06 mm, with a convergence rate of 81% for nonrigid vessel centerline registration on 12 patient datasets, using a statistical shape model. The method thereby outperformed the iterative closest point algorithm, the GMM registration without orientation, and two recently published methods on 2D/3D coronary artery registration.
Keywords :
Gaussian processes; blood vessels; computerised tomography; diagnostic radiography; geometry; image registration; medical image processing; mixture models; patient treatment; probability; statistical analysis; 2D projection; 3D coronary artery centerline alignment; CTA images; GMM based point-set registration; convergence rate; distance metric modification; feature based 2D/3D registration; interventional X-ray angiography; iterative closest point algorithm; median accuracy; nonrigid 2D/3D coronary artery registration; nonrigid vessel centerline registration; oriented GMM registration; oriented Gaussian mixture models; patient datasets; patient vasculature; percutaneous coronary interventions; preinterventional computed tomography angiography; probabilistic point correspondences; simulation experiments; statistical shape model; Arteries; Biomedical measurement; Computed tomography angiography; Gaussian processes; Shape analysis; Three-dimensional displays; X-rays; Gaussian mixture model (GMM); percutaneous coronary intervention (PCI); point-set; statistical shape models (SSM);
Journal_Title :
Medical Imaging, IEEE Transactions on
DOI :
10.1109/TMI.2014.2300117