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Plos One
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June 8, 2023
In-silico modelling of the impact of hypertension on the mean transvalvular gradients in aortic stenosis
Jacques Liebenberg, Anton Doubell, Ryno Laubscher, et al.
Medical Engineering & Physics
|
August 4, 2022
Dynamic simulation of aortic valve stenosis using a lumped parameter cardiovascular system model with flow regime dependent valve pressure loss characteristics
Ryno Laubscher, Johan van der Merwe, Jacques Liebenberg, et al.
Journal of Biomechanical Engineering
|
September 9, 2022
Estimation of Simulated Left Ventricle Elastance Using Lumped Parameter Modelling and Gradient-Based Optimization With Forward-Mode Automatic Differentiation Based on Synthetically Generated Noninvasive Data
Ryno Laubscher, Johan Van Der Merwe, Philip Herbst, et al.
International Journal for Numerical Methods in Biomedical Engineering
|
March 7, 2026
Evaluation of the Haemodynamic Behaviour of Stenosed Aortic Heart Valves Using Fluid Structure Interaction Modelling
Lindi Grobler Kock, Ryno Laubscher, Johan van der Merwe, et al.
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Search research articles
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Showing results (1-10 of 4) with videos related to
Sort By:
Page
of 1
Plos One
|
June 8, 2023
In-silico modelling of the impact of hypertension on the mean transvalvular gradients in aortic stenosis
Jacques Liebenberg, Anton Doubell, Ryno Laubscher, et al.
Medical Engineering & Physics
|
August 4, 2022
Dynamic simulation of aortic valve stenosis using a lumped parameter cardiovascular system model with flow regime dependent valve pressure loss characteristics
Ryno Laubscher, Johan van der Merwe, Jacques Liebenberg, et al.
Journal of Biomechanical Engineering
|
September 9, 2022
Estimation of Simulated Left Ventricle Elastance Using Lumped Parameter Modelling and Gradient-Based Optimization With Forward-Mode Automatic Differentiation Based on Synthetically Generated Noninvasive Data
Ryno Laubscher, Johan Van Der Merwe, Philip Herbst, et al.
International Journal for Numerical Methods in Biomedical Engineering
|
March 7, 2026
Evaluation of the Haemodynamic Behaviour of Stenosed Aortic Heart Valves Using Fluid Structure Interaction Modelling
Lindi Grobler Kock, Ryno Laubscher, Johan van der Merwe, et al.
Page
of 1