Literature DB >> 33263155

Myocardial Perfusion Simulation for Coronary Artery Disease: A Coupled Patient-Specific Multiscale Model.

Lazaros Papamanolis1, Hyun Jin Kim2, Clara Jaquet3, Matthew Sinclair2,4, Michiel Schaap2,4, Ibrahim Danad5, Pepijn van Diemen5, Paul Knaapen5, Laurent Najman3, Hugues Talbot3,6, Charles A Taylor2, Irene Vignon-Clementel7.   

Abstract

Patient-specific models of blood flow are being used clinically to diagnose and plan treatment for coronary artery disease. A remaining challenge is bridging scales from flow in arteries to the micro-circulation supplying the myocardium. Previously proposed models are descriptive rather than predictive and have not been applied to human data. The goal here is to develop a multiscale patient-specific model enabling blood flow simulation from large coronary arteries to myocardial tissue. Patient vasculatures are segmented from coronary computed tomography angiography data and extended from the image-based model down to the arteriole level using a space-filling forest of synthetic trees. Blood flow is modeled by coupling a 1D model of the coronary arteries to a single-compartment Darcy myocardium model. Simulated results on five patients with non-obstructive coronary artery disease compare overall well to [[Formula: see text]O][Formula: see text]O PET exam data for both resting and hyperemic conditions. Results on a patient with severe obstructive disease link coronary artery narrowing with impaired myocardial blood flow, demonstrating the model's ability to predict myocardial regions with perfusion deficit. This is the first report of a computational model for simulating blood flow from the epicardial coronary arteries to the left ventricle myocardium applied to and validated on human data.

Entities:  

Keywords:  Coronary artery disease; Heart; Hemodynamics; MBF (Myocardial blood flow); PET perfusion map

Year:  2020        PMID: 33263155     DOI: 10.1007/s10439-020-02681-z

Source DB:  PubMed          Journal:  Ann Biomed Eng        ISSN: 0090-6964            Impact factor:   3.934


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Review 1.  Standardized myocardial segmentation and nomenclature for tomographic imaging of the heart. A statement for healthcare professionals from the Cardiac Imaging Committee of the Council on Clinical Cardiology of the American Heart Association.

Authors:  Manuel D Cerqueira; Neil J Weissman; Vasken Dilsizian; Alice K Jacobs; Sanjiv Kaul; Waren K Laskey; Dudley J Pennell; John A Rumberger; Thomas Ryan; Mario S Verani
Journal:  Int J Cardiovasc Imaging       Date:  2002-02       Impact factor: 2.357

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1.  Prediction of myocardial blood flow under stress conditions by means of a computational model.

Authors:  Simone Di Gregorio; Christian Vergara; Giovanni Montino Pelagi; Andrea Baggiano; Paolo Zunino; Marco Guglielmo; Laura Fusini; Giuseppe Muscogiuri; Alexia Rossi; Mark G Rabbat; Alfio Quarteroni; Gianluca Pontone
Journal:  Eur J Nucl Med Mol Imaging       Date:  2022-01-05       Impact factor: 10.057

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