PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
November 4, 2020ASAIO Journal27 citationsOpen Access

Dynamics of Blood Flows in Aortic Stenosis: Mild, Moderate, and Severe

CJChoon-Sik JhunRNRaymond K. NewswangerJCJoshua Cysyk

Key Result

Severe aortic stenosis generated highly skewed jet velocities up to 8.0 m/s and maximum turbulent shear stresses of 2,500 Pa, compared to 260 Pa in mild AS and 490 Pa in moderate AS.

Structured PICO

How do blood flow dynamics and shear stresses change across mild, moderate, and severe aortic stenosis models?

P
Population
Computational and in vitro study using large eddy simulations on physiologically representative models of mild, moderate, and severe aortic stenosis.
E
Exposure
Large eddy simulations (LES) validated by particle image velocimetry with a peak physiologic flow condition of 18 liters per minute
C
Comparator
Comparison across mild, moderate, and severe AS models
O
Outcome
Time-accurate velocity fields, transvalvular pressure gradient, laminar viscous wall shear stresses (WSS), and turbulent (Reynolds) shear stresses (RSSmax)surrogate

Severe aortic stenosis generates extremely high peak velocities (up to 8 m/s) and turbulent shear stresses (up to 2,500 Pa), providing a biomechanical link to hemostatic abnormalities like acquired von Willebrand syndrome.

Abstract

Supraphysiologic high shear stresses created in calcific aortic stenosis (AS) are known to cause hemostatic abnormalities, however, the relationship between the complex blood flows over the severity of AS and hemostatic abnormalities still remains unclear. This study systematically characterized the blood flow in mild, moderate, and severe AS. A series of large eddy simulations (LES) validated by particle image velocimetry were performed on physiologically representative AS models with a peak physiologic flow condition of 18 liter per minute. Time-accurate velocity fields, transvalvular pressure gradient, and laminar viscous-and turbulent (or Reynolds) shear stresses (RSSmax) were evaluated for each degree of severity. The peak velocities of mild, moderate, and severe AS were on the order of 2.0, 4.0, and 8.0 m/s, respectively. Jet velocity in severe AS was highly skewed with extremely high velocity (as high as 8 m/s) and mainly traveled through the posterior aortic wall up to the aortic arch while still carrying a relatively high velocity, that is, >4 m/s. The mean laminar viscous wall shear stresses (WSS) for mild, moderate, and severe AS were on the order of 40, 100, and 180 Pa, respectively. The RSSmax were on the order of 260, 490, and 2,500 Pa for mild, moderate, and severe AS, respectively. This study may provide a link between altered flows in AS and hemostatic abnormalities such as acquired von Willebrand syndrome and hemolysis, thus, help diagnosing and timing of the treatment.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Jhun et al. (2020) studied Aortic Stenosis. Aortic stenosis severity (mild, moderate, severe) was evaluated on Blood flow characteristics (peak velocity, laminar viscous wall shear stress, turbulent shear stress). Severe aortic stenosis generated highly skewed jet velocities up to 8.0 m/s and maximum turbulent shear stresses of 2,500 Pa, compared to 260 Pa in mild AS and 490 Pa in moderate AS.

synapsesocial.com/papers/6a430f742932785aadad2967https://doi.org/10.1097/mat.0000000000001296
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

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

  1. 1Evaluation of Aortic Blood Flow and Wall Shear Stress in Aortic Stenosis and Its Association With Left Ventricular Remodeling2016 · 113 citations
  2. 2Hemodynamic Alteration in Aortic Valve Stenosis: CFD Insights from Leaflet-Resolved Models2025 · 4 citations
  3. 3Hemodynamic characterization of aortic stenosis states2019 · 24 citations
  4. 4Fluid mechanics of aortic stenosis1988 · 69 citations
  5. 5Aortic Valve Stenosis Alters Expression of Regional Aortic Wall Shear Stress: New Insights From a 4‐Dimensional Flow Magnetic Resonance Imaging Study of 571 Subjects2017 · 158 citations