ArticleJACC. Advances2024
Noninvasive Pressure-Volume Loops Predict Major Adverse Cardiac Events in Heart Failure With Reduced Ejection Fraction.
Article in JACC. Advances, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed.
- Non-invasive pressure-volume loop analysis in left ventricular load manipulation.Clinical physiology and functional imaging · 2026Article
- Prognostic value of potential energy derived from noninvasive pressure-volume loop analysis in heart failure with preserved ejection fraction.Hypertension research : official journal of the Japanese Society of Hypertension · 2026Article
- Characteristics and clinical significance of myocardial work in cardiac light-chain amyloidosis: pressure-volume loop analysis based on cardiovascular magnetic resonance.Journal of cardiovascular magnetic resonance : official journal of the Society for Cardiovascular Magnetic Resonance · 2026Article
- Comparison of noninvasive pressure-volume loops derived from cardiac magnetic resonance and transthoracic echocardiography in normal subjects.Scientific reports · 2026Article
- Non-invasive pressure-volume loops by cardiovascular magnetic resonance and outcome in ST-elevation myocardial infarction.European heart journal. Imaging methods and practice · 2026Article
- Noninvasive Pressure-Volume Loops: Can Cardiac MRI Obviate the Need for Invasive Catheter Hemodynamic Measurements?JACC. Advances · 2024Article
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Authors and funding
4 authors.
Funding
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Abstract
Background: Heart failure with reduced ejection fraction (HFrEF) is characterized by ventricular remodeling and impaired myocardial energetics. Left ventricular pressure-volume (PV) loop analysis can be performed noninvasively using cardiovascular magnetic resonance (CMR) imaging to assess cardiac thermodynamic efficiency. Objectives: The aim of the study was to investigate whether noninvasive PV loop parameters, derived from CMR, could predict major adverse cardiac events (MACE) in HFrEF patients. Methods: PV loop parameters (stroke work, ventricular efficiency, external power, contractility, and energy per ejected volume) were computed from CMR cine images and brachial blood pressure. The primary end point was MACE (cardiovascular death, heart failure (HF) hospitalization, myocardial infarction, revascularization, ventricular tachycardia/fibrillation, heart transplantation, or left ventricular assist device implantation within 5 years). Associations between PV loop parameters and MACE were evaluated using multivariable Cox regression. Results: One hundred and sixty-four HFrEF patients (left ventricular ejection fraction ≤40%, age 63 [IQR: 55-70] years, 79% male) who underwent clinical CMR examination between 2004 and 2014 were included. Eighty-eight patients (54%) experienced at least one MACE after an average of 2.8 years. Unadjusted models demonstrated a significant association between MACE and all PV loop parameters ( Conclusions: Ventricular efficiency, derived from noninvasive PV loop analysis from standard CMR scans, is associated with MACE in patients with HFrEF.
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