Skip to main content

Research Repository

Advanced Search

Registration of 3D trans-esophageal echocardiography to X-ray fluoroscopy using image-based probe tracking

Aldo Rinaldi, C.; Gao, Gang; Penney, Graeme; Ma, Yingliang; Gogin, Nicolas; Cathier, Pascal; Arujuna, Aruna; Morton, Geraint; Caulfield, Dennis; Gill, Jaswinder; Hancock, Jane; Redwood, Simon; Thomas, Martyn; Razavi, Reza; Gijsbers, Geert; Rhode, Kawal

Authors

C. Aldo Rinaldi

Gang Gao

Graeme Penney

Yingliang Ma

Nicolas Gogin

Pascal Cathier

Aruna Arujuna

Geraint Morton

Dennis Caulfield

Jaswinder Gill

Jane Hancock

Simon Redwood

Martyn Thomas

Reza Razavi

Geert Gijsbers

Kawal Rhode



Abstract

Two-dimensional (2D) X-ray imaging is the dominant imaging modality for cardiac interventions. However, the use of X-ray fluoroscopy alone is inadequate for the guidance of procedures that require soft-tissue information, for example, the treatment of structural heart disease. The recent availability of three-dimensional (3D) trans-esophageal echocardiography (TEE) provides cardiologists with real-time 3D imaging of cardiac anatomy. Increasingly X-ray imaging is now supported by using intra-procedure 3D TEE imaging. We hypothesize that the real-time co-registration and visualization of 3D TEE and X-ray fluoroscopy data will provide a powerful guidance tool for cardiologists. In this paper, we propose a novel, robust and efficient method for performing this registration. The major advantage of our method is that it does not rely on any additional tracking hardware and therefore can be deployed straightforwardly into any interventional laboratory. Our method consists of an image-based TEE probe localization algorithm and a calibration procedure. While the calibration needs to be done only once, the GPU-accelerated registration takes approximately from 2 to 15. s to complete depending on the number of X-ray images used in the registration and the image resolution. The accuracy of our method was assessed using a realistic heart phantom. The target registration error (TRE) for the heart phantom was less than 2. mm. In addition, we assess the accuracy and the clinical feasibility of our method using five patient datasets, two of which were acquired from cardiac electrophysiology procedures and three from trans-catheter aortic valve implantation procedures. The registration results showed our technique had mean registration errors of 1.5-4.2. mm and 95% capture range of 8.7-11.4. mm in terms of TRE. © 2011 Elsevier B.V.

Citation

Aldo Rinaldi, C., Gao, G., Penney, G., Ma, Y., Gogin, N., Cathier, P., …Rhode, K. (2012). Registration of 3D trans-esophageal echocardiography to X-ray fluoroscopy using image-based probe tracking. Medical Image Analysis, 16(1), 38-49. https://doi.org/10.1016/j.media.2011.05.003

Journal Article Type Article
Publication Date Jan 1, 2012
Journal Medical Image Analysis
Print ISSN 1361-8415
Electronic ISSN 1361-8423
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 16
Issue 1
Pages 38-49
DOI https://doi.org/10.1016/j.media.2011.05.003
Keywords Image registration;
cardiac intervention, trans-esophageal echocardiography, x-ray fluoroscopy
Public URL https://uwe-repository.worktribe.com/output/950813
Publisher URL http://dx.doi.org/10.1016/j.media.2011.05.003
Additional Information Corporate Creators : King's College London, Philips Healthcare, St. Thomas Hospital London

Downloadable Citations