The Use of Digital Coronary Phantoms for the Validation of Arterial Geometry Reconstruction and Computation of Virtual FFR

Author:

Pederzani GiuliaORCID,Czechowicz Krzysztof,Ghorab Nada,Morris Paul D.ORCID,Gunn Julian P.ORCID,Narracott Andrew J.,Hose David Rodney,Halliday Ian

Abstract

We present computational fluid dynamics (CFD) results of virtual fractional flow reserve (vFFR) calculations, performed on reconstructed arterial geometries derived from a digital phantom (DP). The latter provides a convenient and parsimonious description of the main vessels of the left and right coronary arterial trees, which, crucially, is CFD-compatible. Using our DP, we investigate the reconstruction error in what we deem to be the most relevant way—by evaluating the change in the computed value of vFFR, which results from varying (within representative clinical bounds) the selection of the virtual angiogram pair (defined by their viewing angles) used to segment the artery, the eccentricity and severity of the stenosis, and thereby, the CFD simulation’s luminal boundary. The DP is used to quantify reconstruction and computed haemodynamic error within the VIRTUheartTM software suite. However, our method and the associated digital phantom tool are readily transferable to equivalent, clinically oriented workflows. While we are able to conclude that error within the VIRTUheartTM workflow is suitably controlled, the principal outcomes of the work reported here are the demonstration and provision of a practical tool along with an exemplar methodology for evaluating error in a coronary segmentation process.

Funder

British Heart Foundation

European Union

Wellcome Trust

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Mechanical Engineering,Condensed Matter Physics

Reference27 articles.

1. Handbook of Medical Imaging;Bankman,2000

2. Susceptibility of Tmax to Tracer Delay on Perfusion Analysis: Quantitative Evaluation of Various Deconvolution Algorithms Using Digital Phantoms

3. Design of a digital phantom population for myocardial perfusion SPECT imaging research

4. Evaluation of the fitting process in diffusion MRI analysis using digital phantom of the human brain—Digital phantom of kurtosis model;Fujiwara;Proceedings of the World Automation Congress (WAC): Emerging Technologies for a New Paradigm in System of Systems Enginnering,2014

5. Evaluation of normal lung tissue complication probability in gated and conventional radiotherapy using the 4D XCAT digital phantom

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