A comprehensive analysis of the intramural segment in interarterial anomalous coronary arteries using computed

Claire J Koppel1, Diederick B H Verheijen1, Philippine Kiès1

  • 1Department of Cardiology, CAHAL, Center for Congenital Heart Disease Amsterdam-Leiden, Leiden University Medical Center, Leiden, The Netherlands.

Insights

Anomalous coronary artery originating from the opposite sinus of Valsalva (ACAOS) with an interarterial course can be identified by a new computed tomography angiography (CTA) measurement. The interluminal space (ILS) of less than 0.95 mm accurately detects intramural ACAOS segments.

Area of Science:

  • Cardiovascular Imaging
  • Radiology
  • Congenital Heart Disease

Background:

  • Anomalous coronary artery originating from the opposite sinus of Valsalva (ACAOS) with an interarterial course is a potential cause of sudden cardiac death.
  • High-risk features include slit-like ostium, acute angle take-off, proximal narrowing, and intramural segments.
  • Current computed tomography angiography (CTA) lacks robust criteria for identifying intramural ACAOS segments.

Purpose of the Study:

  • To develop and validate new CTA parameters for detecting intramural segments in interarterial ACAOS.
  • To establish quantitative criteria for distinguishing intramural from non-intramural ACAOS courses.

Main Methods:

  • Retrospective analysis of CTA scans from 25 patients with confirmed intramural interarterial ACAOS.
  • Measurement of the interluminal space (ILS) between the aorta and ACAOS lumens at 2 mm intervals.
  • Assessment of ILS at the ostium and the end of the intramural segment using multiplanar reconstruction.
  • Interobserver agreement and receiver operator characteristic (ROC) analysis.

Main Results:

  • A mean ILS of 0.69 ± 0.15 mm was observed 2 mm from the ostium.
  • The mean ILS significantly increased to 1.27 ± 0.29 mm at the end of the intramural segment (P < 0.001).
  • An ILS cutoff of <0.95 mm demonstrated 100% sensitivity and 84% specificity for diagnosing intramural ACAOS.
  • Good interobserver reproducibility was confirmed (ICC 0.77).

Conclusions:

  • The interluminal space (ILS) is a novel and reliable CTA parameter for identifying intramural ACAOS.
  • An ILS <0.95 mm is indicative of an intramural course in interarterial ACAOS.
  • This quantitative CTA measurement can aid in risk stratification for sudden cardiac death in patients with ACAOS.
Abstract

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