The Impact of Coronary Physiology on Contemporary Clinical Decision Making

Norihiro Kogame1, Masafumi Ono2, Hideyuki Kawashima2

  • 1Amsterdam UMC, University of Amsterdam, Heart Center, Department of Clinical and Experimental Cardiology, Amsterdam Cardiovascular Sciences, Amsterdam, the Netherlands; Department of Cardiology, Toho University Medical Center, Ohashi Hospital, Tokyo, Japan.

Insights

Functional coronary assessment using fractional flow reserve and other pressure-based indexes aids decision-making for myocardial revascularization. This review proposes an algorithm to optimize its use, improving outcomes and reducing unnecessary procedures for coronary artery disease (CAD).

Area of Science:

  • Cardiology
  • Interventional Cardiology
  • Physiology

Background:

  • Physiological assessment is crucial for guiding myocardial revascularization in coronary artery disease (CAD).
  • Fractional flow reserve (FFR) and other pressure-based indices are key tools for assessing coronary stenoses.
  • Physiology also identifies vascular dysfunction in patients without obstructive CAD.

Purpose of the Study:

  • To review available modalities for functional coronary assessment.
  • To discuss their application timing: pre-, during, and post-percutaneous coronary intervention (PCI).
  • To propose an algorithmic approach for physiological coronary investigations in clinical practice.

Main Methods:

  • Review of >10 modalities for functional coronary assessment (intracoronary and image-based).
  • Categorization of modalities by timing of use in the catheterization laboratory.
  • Discussion of advantages and limitations in different clinical settings.

Main Results:

  • Current adoption of physiological tools for CAD assessment remains low.
  • Information from functional assessment guides PCI indication, planning, and outcome documentation.
  • Intracoronary physiology is vital for diagnosing microcirculatory dysfunction in non-obstructive CAD.

Conclusions:

  • A structured, algorithmic approach to physiological coronary investigations is proposed.
  • Aims include avoiding unnecessary revascularization, improving PCI outcomes, and diagnosing vascular dysfunction.
  • This approach may increase the adoption of functional assessment technologies in CAD management.

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