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Interventional Diagnostic Procedure: A Practical Guide for the Assessment of Coronary Vascular Function
Published on: March 15, 2022
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.
Abstract:
Physiological assessment of coronary artery disease (CAD) has become one of the cornerstones of decision making for myocardial revascularization, with a large body of evidence supporting the benefits of using fractional flow reserve and other pressure-based indexes for functional assessment of coronary stenoses. Furthermore, physiology allows the identification of specific vascular dysfunction mechanisms in patients without obstructive CAD. Currently, more than 10 modalities of functional coronary assessment are available, although the overall adoption of these physiological tools, of either intracoronary or image-based nature, is still low. In this paper the authors review these modalities of functional coronary assessment according to their timing of use: outside the catheterization laboratory, in the catheterization laboratory prior to the percutaneous coronary intervention (PCI), and in the catheterization laboratory during or after PCI. The authors discuss how the information obtained can be used in setting the indication for PCI, in planning and guiding the procedure, and in documenting the final functional result of the intervention. The advantages and limitations of each modality in each setting are discussed. Furthermore, the key value of intracoronary physiology in diagnosing mechanisms of microcirculatory dysfunction, which account for the presence of ischemia in many patients without obstructive CAD, is revisited. On the basis of the opportunities generated by the multiplicity of diagnostic tools described, the authors propose an algorithmic approach to physiological coronary investigations in clinical practice, with the key aims of: 1) avoiding unneeded revascularization procedures; 2) improving procedural PCI and long-term outcomes in patients with obstructive CAD; and 3) diagnosing vascular dysfunction mechanisms that can be effectively treated in patients with NOCAD. The authors believe that such structured approach may also contribute to the wider adoption of available technologies for functional assessment of patients with CAD.
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