A novel framework for fully-automated co-registration of intravascular ultrasound and optical coherence tomography imaging data
Xingwei He, Kit Mills Bransby, Ahmet Emir Ulutas, Thamil Kumaran, Nathan Angelo Lecaros Yap, Gonul Zeren, Hesong Zeng, Yaojun Zhang, Andreas Baumbach, James Moon, Anthony Mathur, Jouke Dijkstra, Qianni Zhang, Lorenz Raber, Christos V Bourantas

TL;DR
This paper presents a deep-learning framework that automates the co-registration of intravascular ultrasound and optical coherence tomography images, enabling rapid and accurate analysis of large-scale multimodal cardiovascular imaging data.
Contribution
It introduces a novel deep-learning based method for fully automated longitudinal and circumferential co-registration of IVUS and OCT images, outperforming previous manual approaches.
Findings
High concordance with expert analysts (CCC >0.99 and >0.90)
Processing time per vessel <90 seconds
Comparable performance to expert analysts in co-registration accuracy
Abstract
Aims: To develop a deep-learning (DL) framework that will allow fully automated longitudinal and circumferential co-registration of intravascular ultrasound (IVUS) and optical coherence tomography (OCT) images. Methods and results: Data from 230 patients (714 vessels) with acute coronary syndrome that underwent near-infrared spectroscopy (NIRS)-IVUS and OCT imaging in their non-culprit vessels were included in the present analysis. The lumen borders annotated by expert analysts in 61,655 NIRS-IVUS and 62,334 OCT frames, and the side branches and calcific tissue identified in 10,000 NIRS-IVUS frames and 10,000 OCT frames, were used to train DL solutions for the automated extraction of these features. The trained DL solutions were used to process NIRS-IVUS and OCT images and their output was used by a dynamic time warping algorithm to co-register longitudinally the NIRS-IVUS and OCT…
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Taxonomy
TopicsCoronary Interventions and Diagnostics · Optical Coherence Tomography Applications · Photoacoustic and Ultrasonic Imaging
