Diagnostic accuracy of strain imaging in predicting myocardial viability after an ST-elevation myocardial infarction

Fathia Mghaieth Zghal1,2, Selim Boudiche1,2, Sofiane Haboubi1

  • 1Service of Functional Exploration and Cardio Reanimation, Rabta University Hospital, Tunis, Tunisia.

Medicine
|May 9, 2020
PubMed

Insights

Strain parameters like global longitudinal strain (GLS) and territorial longitudinal strain (TLS) measured early after ST-elevation myocardial infarction (STEMI) can predict myocardial viability. These echocardiographic measures offer prognostic insights for guiding intervention strategies in STEMI patients.

Area of Science:

  • Cardiology
  • Medical Imaging
  • Echocardiography

Background:

  • Viability imaging techniques are often unavailable or unvalidated in the acute phase of ST-elevation myocardial infarction (STEMI).
  • Predicting myocardial viability post-revascularization is crucial for guiding treatment decisions in STEMI patients.

Purpose of the Study:

  • To evaluate the predictive ability of strain parameters, specifically global longitudinal strain (GLS) and territorial longitudinal strain (TLS), assessed in the acute phase of STEMI, for predicting myocardial viability after revascularization.

Main Methods:

  • Thirty-one STEMI patients with recanalized culprit arteries and baseline akinesia underwent prospective inclusion.
  • Bidimensional GLS and TLS were obtained within 24 hours of admission.
  • Delayed enhancement cardiac magnetic resonance imaging (DE-CMR) at 3 months served as the reference standard for myocardial viability.

Main Results:

  • GLS and TLS were significantly lower in patients with viable myocardium (DE <50%) compared to nonviable myocardium (DE >50%).
  • GLS correlated with DE-CMR (r=0.54, P=.002), with a cutoff of -13.9% predicting viability (86% sensitivity, 78% specificity).
  • TLS demonstrated a stronger correlation with DE-CMR (r=0.69, P<.001), with a cutoff of -9.4% predicting viability (78% sensitivity, 95% specificity).

Conclusions:

  • GLS and TLS measured acutely in STEMI patients effectively predict myocardial viability assessed by DE-CMR at 3 months.
  • These strain parameters serve as valuable prognostic indicators.
  • Acute phase GLS and TLS can guide the prioritization and assess the potential usefulness of percutaneous coronary intervention in STEMI patients.

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