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July 28, 2021European Heart Journal - Cardiovascular Imaging51 citationsOpen Access

Impaired myocardial work efficiency in heart failure with preserved ejection fraction

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ADAntonello D’AndreaFIFederica IlardiFDFlavio D’Ascenzi

Structured PICO

Does resting myocardial work efficiency correlate with exercise capacity and pulmonary congestion in patients with HFpEF?

P
Population
230 patients with heart failure with preserved ejection fraction (HFpEF) (mean age 71.3 ± 5.3 years, 61.2% female) and 150 age- and sex-comparable healthy controls.
I
Intervention
Standard echocardiography, lung ultrasound, LV 2D speckle-tracking strain, and myocardial work efficiency (MWE) assessment at rest and during exercise.
C
Comparator
150 age- and sex-comparable healthy controls.
O
Outcome
LV myocardial deformation, diastolic function, and contractile reserve at rest and during exercise, and their correlation with functional capacity.surrogate

In patients with HFpEF, lower resting values of LV global longitudinal strain and myocardial work efficiency indicate early subclinical myocardial damage and correlate with reduced exercise capacity and greater pulmonary congestion.

Abstract

AIMS: Heart failure with preserved ejection fraction (HFpEF) is a growing public health problem. Impairment in left ventricular (LV) diastolic function has been proposed as a key pathophysiologic determinant. However, the role of concomitant systolic dysfunction despite preserved LV ejection fraction (LVEF) has not been well characterized. To analyse LV myocardial deformation, diastolic function, and contractile reserve (CR) in patients with HFpEF at rest and while during exercise, as well as their correlation with functional capacity. METHODS AND RESULTS: Standard echo, lung ultrasound, LV 2D speckle-tracking strain, and myocardial work efficiency (MWE) were performed at rest and during exercise in 230 patients with HFpEF (female sex 61.2%; 71.3 ± 5.3 years) in 150 age- and sex-comparable healthy controls. LV mass index and LAVI were significantly increased in HFpEF. Conversely, global longitudinal strain (GLS) and MWE were consequently reduced in HFpEF patients. During effort, HFpEF showed reduced exercise time, capacity, and VO2 peak. Increase in LVEF and LV GLS was significantly lower in HFpEF patients, while LV E/e' ratio, pulmonary pressures, and B-lines by lung ultrasound rose. A multivariable analysis outlined that LV MWE at rest was closely related to maximal Watts reached (beta coefficient: 0.43; P < 0.001), peak VO2 (beta: 0.50; P < 0.001), LV E/e' (beta: 0.52, P < 0.001), and number of B-lines during effort (beta: -0.36; P < 0.01). CONCLUSIONS: The lower resting values of LV GLS and MWE in HFpEF patients suggest an early subclinical myocardial damage, which seems to be closely associated with lower exercise capacity, greater pulmonary congestion, and blunted LV contractile reserve during effort.

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Cite This Study

D’Andrea et al. (2021) studied this question.

synapsesocial.com/papers/6a8216eb5c07f1bb40f25191https://doi.org/10.1093/ehjci/jeab153
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Heart failure with a preserved ejection fraction additive value of an exercise stress echocardiography2012 · 51 citations
  2. 2Heterogeneous Responses of Systolic and Diastolic Left Ventricular Function to Exercise in Patients with Heart Failure and Preserved Ejection Fraction2015 · 31 citations
  3. 3Left Ventricular Strain in Heart Failure with Preserved Ejection Fraction2023
  4. 4Exercise-Induced Out-Of-Proportion Increase in Afterload and Impaired Right Ventricular Contractile Reserve in HFpEF2025
  5. 5Impaired Chronotropic and Vasodilator Reserves Limit Exercise Capacity in Patients With Heart Failure and a Preserved Ejection Fraction2006 · 696 citations