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Updated: Oct 19, 2025

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A Novel Approach to Left Ventricular Filling Pressure Assessment: The Role of Hemodynamic Forces Analysis
Lorenzo Airale1, Fabrizio Vallelonga1, Tommaso Forni1
1Internal Medicine and Hypertension Division, Department of Medical Sciences, Azienda Ospedaliera Universitaria (AOU) "Città della Salute e della Scienza" Hospital, University of Turin, Turin, Italy.
Insights
Hemodynamic force (HDF) analysis shows promise in assessing diastolic function and estimating left ventricular filling pressures. This novel echocardiographic tool may improve diagnostic accuracy in heart failure patients.
Area of Science:
- Cardiology
- Echocardiography
- Heart Failure Diagnostics
Background:
- Diastolic dysfunction is common in heart failure, leading to elevated left ventricular (LV) filling pressures.
- Right heart catheterization (RHC) is the gold standard for assessing LV filling pressures.
- Hemodynamic force (HDF) analysis is a novel echocardiographic technique using speckle-tracking.
Purpose of the Study:
- To evaluate Hemodynamic Force (HDF) analysis as a diagnostic tool for diastolic function.
- To assess the utility of HDFs in a predictive model for elevated LV filling pressures.
Main Methods:
- Retrospective analysis of 67 patients from the "Right1 study" undergoing RHC and echocardiography.
- Increased LV filling pressure (ILFP) defined as pulmonary capillary wedge pressure (PCWP) ≥ 15 mmHg.
- HDF analysis, including diastolic longitudinal force (DLF), was performed.
Main Results:
- Diastolic longitudinal force (DLF) was associated with the presence of ILFP (OR = 0.84, p = 0.046).
- A predictive score incorporating DLF, ejection fraction, left atrial enlargement, and e' septal achieved an AUC of 0.83.
- The score demonstrated good sensitivity (72.7%) and specificity (85.3%) for ILFP.
Conclusions:
- HDF analysis may serve as a valuable supplementary tool for assessing diastolic function.
- A scoring system integrating HDFs could enhance echocardiographic accuracy in estimating LV filling pressures.
- Further research is needed to fully elucidate the value of HDF technology.
Abstract:
Background: Diastolic function in patients with heart failure is usually impaired, resulting in increased left ventricular (LV) filling pressures, whose gold standard assessment is right heart catheterization (RHC). Hemodynamic force (HDF) analysis is a novel echocardiographic tool, providing an original approach to cardiac function assessment through the speckle-tracking technology. The aim of our study was to evaluate the use of HDFs, both alone and included in a new predictive model, as a potential novel diagnostic tool of the diastolic function. Methods: HDF analysis was retrospectively performed in 67 patients enrolled in the "Right1 study." All patients underwent RHC and echocardiography up to 2 h apart. Increased LV filling pressure (ILFP) was defined as pulmonary capillary wedge pressure (PCWP) ≥ 15 mmHg. Results: Out of 67 patients, 33 (49.2%) showed ILFP at RHC. Diastolic longitudinal force (DLF), the mean amplitude of longitudinal forces during diastole, was associated with the presence of ILFP (OR = 0.84 [0.70; 0.99], p = 0.046). The PCWP prediction score we built including DLF, ejection fraction, left atrial enlargement, and e' septal showed an AUC of 0.83 [0.76-0.89], with an optimal internal validation. When applied to our population, the score showed a sensitivity of 72.7% and a specificity of 85.3%, which became 66.7 and 94.4%, respectively, when applied to patients classified with "indeterminate diastolic function" according to the current recommendations. Conclusion: HDF analysis could be an additional useful tool in diastolic function assessment. A scoring system including HDFs might improve echocardiographic accuracy in estimating LV filling pressures. Further carefully designed studies could be useful to clarify the additional value of this new technology.
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