Myocardial Viability and Ischaemia in Chronic Total Occlusion

Zia Mehmood1,2, Preethi Suresh1, Rui Li1,2

  • 1Department of Cardiology, Norfolk and Norwich University Hospitals NHS Foundation Trust, Norwich NR4 7UY, UK.

Insights

Cardiovascular Magnetic Resonance (CMR) reveals that 27% of patients with chronic total occlusion (CTO) lack viable myocardium. Viable CTO segments often show reversible ischemia, supporting CMR

Area of Science:

  • Cardiology
  • Medical Imaging
  • Biomedical Engineering

Background:

  • Chronic total occlusion (CTO) impacts 30% of patients undergoing coronary angiography, leading to poorer outcomes.
  • Percutaneous coronary intervention (PCI) for CTO has high technical success but lacks proven survival benefits in randomized controlled trials (RCTs).
  • Cardiovascular Magnetic Resonance (CMR) offers comprehensive myocardial phenotyping and prognostic insights for high-risk CTO patients.

Purpose of the Study:

  • To evaluate the role of multiparametric CMR in assessing myocardial viability, ischemia, and scar burden in patients with CTO.
  • To compare myocardial characteristics between CTO territories with and without viable myocardium.
  • To identify CMR-based predictors of non-viability in CTO.

Main Methods:

  • Fifty-six patients with angiographically confirmed CTO underwent stress perfusion CMR with late gadolinium enhancement.
  • Myocardial function, ischemia, and scar burden were quantified.
  • Comparisons were made between CTO territory and viability subgroups.

Main Results:

  • 27% of CTO patients (15/56) had no viable myocardium.
  • Among patients with viable myocardium, 66% (27/41) showed reversible ischemia.
  • Viable myocardium was associated with higher LV stroke volumes, lower LV scar mass and percentage, and more global and CTO-territory ischemia compared to non-viable myocardium.
  • A CTO-territory scar burden threshold of 11.18% predicted non-viability with 80% sensitivity and 65.85% specificity (AUC = 0.701).

Conclusions:

  • A significant proportion of CTO patients (27%) lack myocardial viability.
  • Patients with viable myocardium in CTO territories typically exhibit reversible ischemia, indicating a phenotype of preserved viability with inducible ischemia.
  • Multiparametric CMR is valuable for phenotyping CTO territories, aiding decisions regarding CTO-PCI.

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