An Abbreviated Exercise Right-Heart Catheterization Protocol for the Diagnosis of Heart Failure With Preserved

Maria V Selvadurai1, Misha Dagan2, Justin Mariani2

  • 1Department of Cardiology, Alfred Hospital, Melbourne, Victoria, Australia.

Insights

An abbreviated 3-minute exercise right heart catheterization (eRHC) protocol accurately diagnoses heart failure with preserved ejection fraction (HFpEF). This simplified method maintains diagnostic accuracy while reducing time and cost, improving accessibility.

Area of Science:

  • Cardiology
  • Clinical Diagnostics
  • Hemodynamics

Background:

  • Heart failure with preserved ejection fraction (HFpEF) diagnosis requires invasive exercise right heart catheterization (eRHC).
  • Current eRHC protocols are lengthy and costly, limiting widespread adoption.
  • An abbreviated protocol could improve diagnostic accessibility for HFpEF.

Purpose of the Study:

  • To evaluate the diagnostic accuracy of a shortened 3-minute eRHC protocol for HFpEF.
  • To compare hemodynamic measurements from the abbreviated protocol with the standard peak exercise protocol.

Main Methods:

  • Retrospective analysis of 773 patients undergoing eRHC (derivation and validation cohorts).
  • Receiver operating characteristic (ROC) analysis to assess diagnostic performance.
  • Correlation analysis of hemodynamic variables between 3-minute and peak exercise measurements.

Main Results:

  • A 3-minute protocol showed 85% sensitivity and 85% specificity for HFpEF diagnosis (c-statistic 0.93 ± 0.01).
  • Strong correlations observed between 3-minute and peak exercise measurements for PCWP, cardiac output, and pulmonary vascular resistance.
  • Validation cohort confirmed high diagnostic capabilities (86% sensitivity, 79% specificity).

Conclusions:

  • A 3-minute eRHC protocol demonstrates significant diagnostic potential for HFpEF.
  • Simplifying eRHC to 3 minutes may increase its utilization, optimize resource use, and reduce patient risk.
  • This abbreviated approach offers a viable strategy for accurate HFpEF diagnosis.
Abstract

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