Related Experiment Video
Updated: Jan 7, 2026

Signal Acquisition, Score Interpretation, and Economics of a Non-Invasive Point-of-Care Test for Coronary Artery Disease
Published on: August 9, 2024
Coronary CTA in Contemporary Percutaneous Coronary Intervention: From Diagnostic Modality to Decision-Making Toolkit
Foziyah Alqahtani1,2,3, Emiliano Bianchini1,2,4, Sara Alsubaie1,2,3
1Sharif Cardiovascular Research Group (F.A., E.B., S.A., S.S., N.A., H.E., R.S., F.S.), University of Galway, Ireland.
Insights
Coronary CT angiography offers noninvasive anatomic and functional assessment for coronary artery disease, improving percutaneous coronary intervention planning. This review provides a framework for integrating CT angiography into PCI strategies for precision medicine.
Area of Science:
- Cardiovascular Imaging
- Interventional Cardiology
Background:
- Percutaneous coronary intervention (PCI) outcomes depend on precise lesion assessment and procedural planning.
- Invasive methods offer detailed insights but increase procedural burden, contrast, and radiation exposure.
Purpose of the Study:
- To present a framework for integrating coronary CT angiography into PCI planning.
- To explore emerging intraprocedural applications of CT angiography in interventional cardiology.
Main Methods:
- Review of current literature on coronary CT angiography for PCI.
- Outline of acquisition protocols, software platforms, and lesion assessment techniques.
- Discussion of emerging technologies like fusion imaging and virtual reality.
Main Results:
- Coronary CT angiography provides accurate noninvasive anatomic and functional data for PCI.
- CT-derived fractional flow reserve and CT myocardial perfusion enhance diagnostic capabilities.
- Emerging technologies offer novel intraprocedural visualization and guidance.
Conclusions:
- Coronary CT angiography is a valuable tool for optimizing PCI strategies.
- Its integration into clinical practice can enhance precision-based interventions.
- Further research and guideline inclusion are needed to fully realize its potential.
Abstract:
Percutaneous coronary intervention outcomes rely heavily on accurate lesion assessment and procedural planning. Invasive tools, such as fractional flow reserve, nonhyperemic pressure ratios, intravascular ultrasound, and optical coherence tomography, provide essential physiological and anatomic insights but are resource-intensive, prolong procedures, and increase contrast and radiation exposure. Coronary computed tomography (CT) angiography has emerged as a noninvasive modality with high diagnostic accuracy for coronary artery disease, capable of detailing plaque composition, lesion length, and vessel geometry. With the integration of CT-derived fractional flow reserve and CT myocardial perfusion imaging, coronary CT angiography now offers both anatomic and functional evaluation, bridging diagnostic and interventional decision-making. Despite guideline endorsement for coronary artery disease diagnosis, its role in guiding percutaneous coronary intervention strategies remains underutilized and absent from revascularization recommendations. This review outlines a practical, step-by-step framework for integrating coronary CT angiography into contemporary percutaneous coronary intervention planning, covering acquisition protocols, software platforms, lesion assessment, and stent strategy optimization. It also explores emerging intraprocedural applications, including fusion imaging, augmented and virtual reality, and holographic visualization. By synthesizing current evidence and identifying gaps, this review positions coronary CT angiography as a promising adjunct in precision-based percutaneous coronary intervention.
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