Simplified Bernoulli's method significantly underestimates pulmonary transvalvular pressure drop
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Summary
To determine whether neglecting the flow unsteadiness in simplified Bernoulli's equation significantly affects the pulmonary transvalvular pressure drop estimation, a Monte Carlo simulation is used.
- Type
- article
- Published
- 2016-06-01
- Cited by
- 36
- References
- 35
- Access
- Open access
- OpenAlex
- https://openalex.org/W2180382450
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:206106231
Keywords
Bernoulli's principle, Pressure drop, Cardiology, Great arteries, Mathematics
References
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Cited by
- Comments regarding “Simplified Bernoulli's method significantly underestimates pulmonary transvalvular pressure drop”
- Diffuse Pulmonary Arteriovenous Fistulas With Pulmonary Arterial Hypertension
- Beyond Bernoulli: Improving the Accuracy and Precision of Non-Invasive Estimation of Peak Pressure Drops
- Estimating the irreversible pressure drop across a stenosis by quantifying turbulence production using 4D Flow MRI
- Validation of pressure drop assessment using 4D flow MRI‐based turbulence production in various shapes of aortic stenoses
- 4D Flow MRI quantification of blood flow patterns, turbulence and pressure drop in normal and stenotic prosthetic heart valves.
- Real-Time Transthoracic Vector Flow Imaging of the Heart in Pediatric Patients
- Neopulmonary Outflow Tract Obstruction Assessment by 4D Flow MRI in Adults With Transposition of the Great Arteries After Arterial Switch Operation
- Non-invasive estimation of relative pressure in turbulent flow using virtual work-energy
- 4D Flow with MRI.
- Evaluation of aortic stenosis using cardiovascular magnetic resonance: a systematic review & meta-analysis
- In vitro experiments on ICOSA6 4D flow MRI measurement for the quantification of velocity and turbulence parameters.
- A Novel Estimation Approach of Pressure Gradient and Haemodynamic Stresses as Indicators of Pathological Aortic Flow Using Subvoxel Modelling
- Numerical simulations for phase-contrast magnetic resonance imaging
- Numerical analysis of stenoses severity and aortic wall mechanics in patients with supravalvular aortic stenosis
- Insight into the membrane fouling in a pilot SWNF system with different membrane module arrangements
- In-vitro and In-Vivo Assessment of 4D Flow MRI Reynolds Stress Mapping for Pulsatile Blood Flow
- Relative pressure estimation from 4D flow MRI using generalized Bernoulli equation in a phantom model of arterial stenosis
- Control Study of Short-Term Aftereffect in Diving Exposure Related Pulmonary Ventilation Function
- Multivariable Technique for the Evaluation of the Trans-stenotic Pressure Gradient
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