From Lumen to Myocardium With Artificial Intelligence: A Clinician's Guide to Comprehensive Cardiac CT

Abbas Mohammadi1, Seyedhesamoddin Khatami2, Sheida Ebrahimi1

  • 1From the Department of Medicine, Valley Health System, Las Vegas, NV.

Insights

Cardiac computed tomography (CT) offers a comprehensive, noninvasive approach to coronary artery disease assessment. Advanced CT techniques, including AI integration, improve diagnosis, guide treatment, and predict outcomes beyond traditional stenosis severity.

Area of Science:

  • Cardiovascular Imaging
  • Radiology
  • Artificial Intelligence in Medicine

Background:

  • Traditional coronary artery disease assessment relies on stenosis severity, which inadequately reflects ischemic burden, plaque vulnerability, or myocardial health.
  • This limitation leads to unnecessary invasive procedures and delayed preventive treatments.
  • Cardiac computed tomography (CT) has emerged as a powerful noninvasive tool to overcome these limitations.

Purpose of the Study:

  • To review current evidence on advanced cardiac CT applications for coronary artery disease.
  • To provide practical guidance for clinicians integrating CT into patient management.
  • To highlight the role of artificial intelligence (AI) in enhancing CT's capabilities.

Main Methods:

  • Synthesis of current scientific literature and clinical trial data on coronary CT angiography (CCTA).
  • Review of studies evaluating CT-derived fractional flow reserve (CT-FFR) and quantitative plaque analysis.
  • Exploration of emerging CT applications like extracellular volume (ECV) quantification.

Main Results:

  • High-quality CCTA is foundational for anatomical assessment and complex revascularization planning, with trials showing reduced invasive procedures.
  • CT-FFR enhances diagnostic specificity and guides revascularization, though prognostic data are evolving.
  • Quantitative plaque analysis, including low-attenuation and total plaque volume, strongly predicts myocardial infarction and mortality, even in nonobstructive disease.
  • Emerging CT applications like ECV show promise in detecting diffuse fibrosis and cardiac amyloidosis.

Conclusions:

  • Cardiac CT provides a comprehensive, noninvasive platform for coronary artery disease assessment, moving beyond simple stenosis evaluation.
  • AI integration is crucial for maximizing the potential of advanced CT techniques.
  • CT offers significant value in guiding revascularization, predicting adverse events, and diagnosing conditions like cardiac amyloidosis.

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