ir. Mathias Peirlinck
- Work address
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Technologiepark Zwijnaarde 126
9052 Zwijnaarde - Mathias.Peirlinck@UGent.be
- ORCID iD
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0000-0002-4948-5585
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Fluid-structure interaction simulation of simplified Ross procedure for assessment of in-vivo wall-shear stress dynamics
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Growth and remodeling in the pulmonary autograft : computational evaluation using kinematic growth models and constrained mixture theory
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- PhD Thesis
- open access
Bridging spatiotemporal scales in biomechanical models for living tissues : from the contracting Esophagus to cardiac growth
(2019) -
- Journal Article
- A1
- open access
Using machine learning to characterize heart failure across the scales
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Kinematic boundary conditions substantially impact in silico ventricular function
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Analyzing the shear wave mechanics in cardiac shear wave elastography using finite element simulations
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Patient-specific biomechanical analysis of the stented and actively contracting esophagus
(2018) -
The in vivo stress state of human cardiovascular tissue
(2018) -
A modular inverse elastostatics approach to resolve the pressure-induced stress state for in vivo imaging based cardiovascular modeling
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An in silico framework to analyze the anisotropic shear wave mechanics in cardiac shear wave elastography