Literature DB >> 29059332

Combining IVUS and Optical Coherence Tomography for More Accurate Coronary Cap Thickness Quantification and Stress/Strain Calculations: A Patient-Specific Three-Dimensional Fluid-Structure Interaction Modeling Approach.

Xiaoya Guo1, Don P Giddens2,3, David Molony2, Chun Yang4, Habib Samady2, Jie Zheng5, Gary S Mintz6, Akiko Maehara6, Liang Wang4, Xuan Pei7, Zhi-Yong Li7, Dalin Tang1,4.   

Abstract

Accurate cap thickness and stress/strain quantifications are of fundamental importance for vulnerable plaque research. Virtual histology intravascular ultrasound (VH-IVUS) sets cap thickness to zero when cap is under resolution limit and IVUS does not see it. An innovative modeling approach combining IVUS and optical coherence tomography (OCT) is introduced for cap thickness quantification and more accurate cap stress/strain calculations. In vivo IVUS and OCT coronary plaque data were acquired with informed consent obtained. IVUS and OCT images were merged to form the IVUS + OCT data set, with biplane angiography providing three-dimensional (3D) vessel curvature. For components where VH-IVUS set zero cap thickness (i.e., no cap), a cap was added with minimum cap thickness set as 50 and 180 μm to generate IVUS50 and IVUS180 data sets for model construction, respectively. 3D fluid-structure interaction (FSI) models based on IVUS + OCT, IVUS50, and IVUS180 data sets were constructed to investigate cap thickness impact on stress/strain calculations. Compared to IVUS + OCT, IVUS50 underestimated mean cap thickness (27 slices) by 34.5%, overestimated mean cap stress by 45.8%, (96.4 versus 66.1 kPa). IVUS50 maximum cap stress was 59.2% higher than that from IVUS + OCT model (564.2 versus 354.5 kPa). Differences between IVUS and IVUS + OCT models for cap strain and flow shear stress (FSS) were modest (cap strain <12%; FSS <6%). IVUS + OCT data and models could provide more accurate cap thickness and stress/strain calculations which will serve as basis for further plaque investigations.

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Year:  2018        PMID: 29059332      PMCID: PMC5816254          DOI: 10.1115/1.4038263

Source DB:  PubMed          Journal:  J Biomech Eng        ISSN: 0148-0731            Impact factor:   2.097


  32 in total

1.  Fusion of angiography and intravascular ultrasound in vivo: establishing the absolute 3-D frame orientation.

Authors:  A Wahle; G P Prause; C von Birgelen; R Erbel; M Sonka
Journal:  IEEE Trans Biomed Eng       Date:  1999-10       Impact factor: 4.538

Review 2.  American College of Cardiology Clinical Expert Consensus Document on Standards for Acquisition, Measurement and Reporting of Intravascular Ultrasound Studies (IVUS). A report of the American College of Cardiology Task Force on Clinical Expert Consensus Documents.

Authors:  G S Mintz; S E Nissen; W D Anderson; S R Bailey; R Erbel; P J Fitzgerald; F J Pinto; K Rosenfield; R J Siegel; E M Tuzcu; P G Yock
Journal:  J Am Coll Cardiol       Date:  2001-04       Impact factor: 24.094

Review 3.  Lessons from sudden coronary death: a comprehensive morphological classification scheme for atherosclerotic lesions.

Authors:  R Virmani; F D Kolodgie; A P Burke; A Farb; S M Schwartz
Journal:  Arterioscler Thromb Vasc Biol       Date:  2000-05       Impact factor: 8.311

4.  Coronary plaque classification with intravascular ultrasound radiofrequency data analysis.

Authors:  Anuja Nair; Barry D Kuban; E Murat Tuzcu; Paul Schoenhagen; Steven E Nissen; D Geoffrey Vince
Journal:  Circulation       Date:  2002-10-22       Impact factor: 29.690

5.  Optical Coherence Tomography and Virtual-Histology Intravascular Ultrasound: Strange Bedfellows? … or Not?

Authors:  Gary S Mintz
Journal:  Circ Cardiovasc Imaging       Date:  2015-10       Impact factor: 7.792

6.  OCT versus IVUS: accuracy versus clinical utility.

Authors:  Akiko Maehara; Gary S Mintz; Gregg W Stone
Journal:  JACC Cardiovasc Imaging       Date:  2013-10

7.  Clinical and angiographic characteristics of patients likely to have vulnerable plaques: analysis from the PROSPECT study.

Authors:  Christos V Bourantas; Hector M Garcia-Garcia; Vasim Farooq; Akiko Maehara; Ke Xu; Philippe Généreux; Roberto Diletti; Takashi Muramatsu; Martin Fahy; Giora Weisz; Gregg W Stone; Patrick W Serruys
Journal:  JACC Cardiovasc Imaging       Date:  2013-10-23

8.  Association of wall shear stress with long-term vascular healing response following bioresorbable vascular scaffold implantation.

Authors:  Antonios Karanasos; Johan C H Schuurbiers; Hector M Garcia-Garcia; Cihan Simsek; Yoshinobu Onuma; Patrick W Serruys; Felix Zijlstra; Robert-Jan van Geuns; Evelyn Regar; Jolanda J Wentzel
Journal:  Int J Cardiol       Date:  2015-05-01       Impact factor: 4.164

9.  An experimental study on the ultimate strength of the adventitia and media of human atherosclerotic carotid arteries in circumferential and axial directions.

Authors:  Zhongzhao Teng; Dalin Tang; Jie Zheng; Pamela K Woodard; Allen H Hoffman
Journal:  J Biomech       Date:  2009-08-07       Impact factor: 2.712

10.  Morphological and Stress Vulnerability Indices for Human Coronary Plaques and Their Correlations with Cap Thickness and Lipid Percent: An IVUS-Based Fluid-Structure Interaction Multi-patient Study.

Authors:  Liang Wang; Jie Zheng; Akiko Maehara; Chun Yang; Kristen L Billiar; Zheyang Wu; Richard Bach; David Muccigrosso; Gary S Mintz; Dalin Tang
Journal:  PLoS Comput Biol       Date:  2015-12-09       Impact factor: 4.475

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  4 in total

1.  A Multi-Modality Image-Based FSI Modeling Approach for Prediction of Coronary Plaque Progression Using IVUS and OCT Data with Follow-Up.

Authors:  Xiaoya Guo; Don Giddens; David Molony; Chun Yang; Habib Samady; Jie Zheng; Mitsuaki Matsumura; Gary Mintz; Akiko Maehara; Liang Wang; Dalin Tang
Journal:  J Biomech Eng       Date:  2019-05-29       Impact factor: 2.097

2.  A platform for high-fidelity patient-specific structural modelling of atherosclerotic arteries: from intravascular imaging to three-dimensional stress distributions.

Authors:  Karim Kadry; Max L Olender; David Marlevi; Elazer R Edelman; Farhad R Nezami
Journal:  J R Soc Interface       Date:  2021-09-29       Impact factor: 4.293

Review 3.  Medical Image-Based Computational Fluid Dynamics and Fluid-Structure Interaction Analysis in Vascular Diseases.

Authors:  Yong He; Hannah Northrup; Ha Le; Alfred K Cheung; Scott A Berceli; Yan Tin Shiu
Journal:  Front Bioeng Biotechnol       Date:  2022-04-27

4.  Expert recommendations on the assessment of wall shear stress in human coronary arteries: existing methodologies, technical considerations, and clinical applications.

Authors:  Frank Gijsen; Yuki Katagiri; Peter Barlis; Christos Bourantas; Carlos Collet; Umit Coskun; Joost Daemen; Jouke Dijkstra; Elazer Edelman; Paul Evans; Kim van der Heiden; Rod Hose; Bon-Kwon Koo; Rob Krams; Alison Marsden; Francesco Migliavacca; Yoshinobu Onuma; Andrew Ooi; Eric Poon; Habib Samady; Peter Stone; Kuniaki Takahashi; Dalin Tang; Vikas Thondapu; Erhan Tenekecioglu; Lucas Timmins; Ryo Torii; Jolanda Wentzel; Patrick Serruys
Journal:  Eur Heart J       Date:  2019-11-01       Impact factor: 29.983

  4 in total

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