Literature DB >> 27162417

3D registration of intravascular optical coherence tomography and cryo-image volumes for microscopic-resolution validation.

David Prabhu1, Emile Mehanna2, Madhusudhana Gargesha1, Di Wen1, Eric Brandt2, Nienke S van Ditzhuijzen2, Daniel Chamie2, Hirosada Yamamoto2, Yusuke Fujino2, Ali Farmazilian2, Jaymin Patel1, Marco Costa2, Hiram G Bezerra2, David L Wilson1.   

Abstract

High resolution, 100 frames/sec intravascular optical coherence tomography (IVOCT) can distinguish plaque types, but further validation is needed, especially for automated plaque characterization. We developed experimental and 3D registration methods, to provide validation of IVOCT pullback volumes using microscopic, brightfield and fluorescent cryo-image volumes, with optional, exactly registered cryo-histology. The innovation was a method to match an IVOCT pull-back images, acquired in the catheter reference frame, to a true 3D cryo-image volume. Briefly, an 11-parameter, polynomial virtual catheter was initialized within the cryo-image volume, and perpendicular images were extracted, mimicking IVOCT image acquisition. Virtual catheter parameters were optimized to maximize cryo and IVOCT lumen overlap. Local minima were possible, but when we started within reasonable ranges, every one of 24 digital phantom cases converged to a good solution with a registration error of only +1.34±2.65μm (signed distance). Registration was applied to 10 ex-vivo cadaver coronary arteries (LADs), resulting in 10 registered cryo and IVOCT volumes yielding a total of 421 registered 2D-image pairs. Image overlays demonstrated high continuity between vascular and plaque features. Bland-Altman analysis comparing cryo and IVOCT lumen area, showed mean and standard deviation of differences as 0.01±0.43 mm2. DICE coefficients were 0.91±0.04. Finally, visual assessment on 20 representative cases with easily identifiable features suggested registration accuracy within one frame of IVOCT (±200μm), eliminating significant misinterpretations introduced by 1mm errors in the literature. The method will provide 3D data for training of IVOCT plaque algorithms and can be used for validation of other intravascular imaging modalities.

Entities:  

Keywords:  3D image registration; cryo-imaging; histology; intravascular imaging; optical coherence tomography; validation

Year:  2016        PMID: 27162417      PMCID: PMC4859892          DOI: 10.1117/12.2217537

Source DB:  PubMed          Journal:  Proc SPIE Int Soc Opt Eng        ISSN: 0277-786X


  27 in total

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3.  Correction of rotational distortion for catheter-based en face OCT and OCT angiography.

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Journal:  Opt Lett       Date:  2014-10-15       Impact factor: 3.776

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9.  Effect of aging on aortic morphology in populations with high and low prevalence of hypertension and atherosclerosis. Comparison between occidental and Chinese communities.

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Authors:  Guillermo J Tearney; Hiroshi Yabushita; Stuart L Houser; H Thomas Aretz; Ik-Kyung Jang; Kelly H Schlendorf; Christopher R Kauffman; Milen Shishkov; Elkan F Halpern; Brett E Bouma
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  3 in total

1.  Voxel-based plaque classification in coronary intravascular optical coherence tomography images using decision trees.

Authors:  Chaitanya Kolluru; David Prabhu; Yazan Gharaibeh; Hao Wu; David L Wilson
Journal:  Proc SPIE Int Soc Opt Eng       Date:  2018-02-27

2.  Co-registration of pre- and post-stent intravascular OCT images for validation of finite element model simulation of stent expansion.

Authors:  Yazan Gharaibeh; Juhwan Lee; David Prabhu; Pengfei Dong; Vladislav N Zimin; Luis A Dallan; Hiram Bezerra; Linxia Gu; David Wilson
Journal:  Proc SPIE Int Soc Opt Eng       Date:  2020-02-28

3.  Application and Evaluation of Highly Automated Software for Comprehensive Stent Analysis in Intravascular Optical Coherence Tomography.

Authors:  Hong Lu; Juhwan Lee; Martin Jakl; Zhao Wang; Pavel Cervinka; Hiram G Bezerra; David L Wilson
Journal:  Sci Rep       Date:  2020-02-07       Impact factor: 4.379

  3 in total

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