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Diagnostic value of echocardiographic markers for diastolic dysfunction and heart failure with preserved ejection
Elisa Dal Canto1,2, Sharon Remmelzwaal1, Adriana Johanne van Ballegooijen1,3
1Department of Epidemiology and Biostatistics, Amsterdam University Medical Center, Amsterdam, The Netherlands.
Insights
Diagnosing heart failure with preserved ejection fraction (HFpEF) is challenging. Novel echocardiographic markers, including left atrial strain and exercise stress testing, show promise in improving diagnostic accuracy for HFpEF and left ventricular diastolic dysfunction (LVDD).
Area of Science:
- Cardiology
- Diagnostic Imaging
- Medical Technology
Background:
- Diagnosing heart failure with preserved ejection fraction (HFpEF) is difficult due to non-specific symptoms and lack of resting signs.
- Sensitive echocardiographic markers are needed for accurate HFpEF diagnosis.
- Left ventricular diastolic dysfunction (LVDD) is a key component of HFpEF.
Purpose of the Study:
- To evaluate the diagnostic performance of echocardiographic markers for HFpEF and LVDD.
- To compare these markers against the gold standard of cardiac catheterization.
- To identify novel echocardiographic tools for improved HFpEF diagnosis.
Main Methods:
- Systematic literature search for studies on echocardiographic markers for HFpEF and LVDD.
- Independent review of studies and risk of bias assessment by two investigators.
- Meta-analysis of diagnostic measures when reported in four or more studies.
Main Results:
- A multivariable model combining echocardiographic, clinical, and arterial function markers showed the highest diagnostic performance (AUC 0.95).
- Left atrial strain demonstrated reasonable diagnostic performance (AUC 0.83, specificity 93%, sensitivity 77%).
- Exercise E/e' improved HFpEF diagnostic algorithm sensitivity to 90%.
Conclusions:
- The current multivariable-based approach is supported for diagnosing HFpEF and LVDD.
- Left atrial strain and exercise echocardiography show potential as diagnostic tools.
- Larger, well-designed studies are required to confirm the incremental value of novel diagnostic tools.
Abstract:
This study aimed to evaluate the diagnostic performance of echocardiographic markers of heart failure with preserved ejection fraction (HFpEF) and left ventricular diastolic dysfunction (LVDD) in comparison with the gold standard of cardiac catheterization. Diagnosing HFpEF is challenging, as symptoms are non-specific and often absent at rest. A clear need exists for sensitive echocardiographic markers to diagnose HFpEF. We systematically searched for studies testing the diagnostic value of novel echocardiographic markers for HFpEF and LVDD. Two investigators independently reviewed the studies and assessed the risk of bias. Results were meta-analysed when four or more studies reported a similar diagnostic measure. Of 353 studies, 20 fulfilled the eligibility criteria. The risk of bias was high especially in the patients' selection domain. The highest diagnostic performance was demonstrated by a multivariable model combining echocardiographic, clinical and arterial function markers with an area under the curve of 0.95 (95% CI, 0.89-0.98). A meta-analysis of four studies indicated a reasonable diagnostic performance for left atrial strain with an AUC of 0.83 (0.70-0.95), a specificity of 93% (95% CI, 90-97%) and a sensitivity of 77% (95% CI, 59-96%). Moreover, the addition of exercise E/e' improved the sensitivity of HFpEF diagnostic algorithms up to 90%, compared with 60 and 34% of guidelines alone. Despite the heterogeneity of the included studies, this review supported the current multivariable-based approach for the diagnosis of HFpEF and LVDD and showed a potential diagnostic role for exercise echocardiography and left atrial strain. Larger well-designed studies are needed to evaluate the incremental value of novel diagnostic tools to current diagnostic algorithms.
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