Rapid virtual fractional flow reserve using 3D computational fluid dynamics
European Heart Journal - Digital Health

Abstract
Over the last ten years, virtual Fractional Flow Reserve (vFFR) has improved the utility of Fractional Flow Reserve (FFR), a globally recommended assessment to guide coronary interventions. Although the speed of vFFR computation has accelerated, techniques utilising full 3D computational fluid dynamics (CFD) solutions rather than simplified analytical solutions still require significant time to compute.
This study investigated the speed, accuracy and cost of a novel 3D-CFD software method based upon a graphic processing unit (GPU) computation, compared with the existing fastest central processing unit (CPU)-based 3D-CFD technique, on 40 angiographic cases. The novel GPU simulation was significantly faster than the CPU method (median 31.7 s (Interquartile Range (IQR) 24.0–44.4s) vs. 607.5 s (490–964 s),
This study demonstrates that vFFR can be computed using 3D-CFD with up to 28-fold acceleration than previous techniques with no clinically significant sacrifice in accuracy.
Contributors

Thomas Newman
Author
University of Sheffield Sheffield , United Kingdom of Great Britain & Northern Ireland

Raunak Borker
Author

Louise Aubiniere-Robb
Author

Justin Hendrickson
Author

Dipankar Choudhury
Author

Ian Halliday
Author

John Fenner
Author

Andrew Narracott
Author

D Rodney Hose
Author

Rebecca Gosling
Author

Julian P Gunn
Author

Paul D Morris
Author
University of Sheffield Sheffield , United Kingdom of Great Britain & Northern Ireland
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