Fractional flow reserve computed tomography in the evaluation of coronary artery disease

Shaw Hua Kueh1, Matthew Boroditsky2, Jonathon Leipsic1,3

  • 1St Paul's Hospital, Vancouver, Canada.

Insights

Fractional flow reserve computed tomography (FFRCT) offers a non-invasive method to assess obstructive coronary artery disease (CAD). This advanced technique improves patient selection for invasive procedures, enhancing diagnostic accuracy and clinical outcomes.

Area of Science:

  • Cardiovascular Imaging
  • Computational Fluid Dynamics
  • Interventional Cardiology

Background:

  • Obstructive coronary artery disease (CAD) is often overdiagnosed by invasive coronary angiography (ICA).
  • Invasive fractional flow reserve (FFR) accurately identifies hemodynamically significant lesions but is underutilized due to procedural burdens.
  • Non-invasive FFR derived from coronary computed tomography angiography (CCTA) offers a promising alternative.

Purpose of the Study:

  • To evaluate the clinical impact and diagnostic utility of fractional flow reserve computed tomography (FFRCT) in patients with suspected obstructive CAD.
  • To assess FFRCT's role as a gatekeeper for invasive coronary angiography (ICA).
  • To explore the mechanistic insights into CAD provided by FFRCT's computational fluid dynamic (CFD) modeling.

Main Methods:

  • FFRCT was derived non-invasively using CFD modeling on CCTA datasets.
  • The diagnostic performance of FFRCT was evaluated against invasive FFR.
  • The PLATFORM study assessed the impact of CCTA-FFRCT on patient selection for ICA.

Main Results:

  • FFRCT demonstrated excellent correlation with invasive FFR, maintaining robustness despite imaging artifacts.
  • The CCTA-FFRCT approach improved patient selection for ICA, increasing the detection rate of obstructive CAD.
  • FFRCT analysis revealed insights into biomechanical forces like wall shear stress acting on coronary plaques.

Conclusions:

  • FFRCT is a diagnostically robust and non-invasive tool for assessing obstructive CAD.
  • FFRCT can effectively streamline patient pathways by optimizing selection for invasive procedures.
  • FFRCT enhances the understanding of CAD pathophysiology through CFD modeling.

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