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Communications Medicine|November 9, 2023
Understanding intracranial aneurysm sounds via high-fidelity fluid-structure-interaction modellingDavid A Bruneau, David A Steinman, Kristian Valen-Sendstad
International Journal for Numerical Methods in Biomedical Engineering|March 4, 2020
A framework for automated and objective modification of tubular structures: Application to the internal carotid arteryAslak W Bergersen, Henrik A Kjeldsberg, Kristian Valen-Sendstad
Biomedical Engineering Online|November 28, 2021
Automated landmarking of bends in vascular structures: a comparative study with application to the internal carotid arteryHenrik A Kjeldsberg, Aslak W Bergersen, Kristian Valen-Sendstad
Journal of Biomechanics|July 27, 2024
On the use of steady flow rates for approximating flow instabilities and vibrations in intracranial aneurysmsDavid A Bruneau, David A Steinman, Kristian Valen-Sendstad
International Journal for Numerical Methods in Biomedical Engineering|September 12, 2025
On the Numerical Evaluation of Wall Shear Stress Using the Finite Element MethodJana Brunátová, Jørgen S Dokken, Kristian Valen-Sendstad, et al.
Annals of Biomedical Engineering|February 25, 2015
Estimation of inlet flow rates for image-based aneurysm CFD models: where and how to begin?Kristian Valen-Sendstad, Marina Piccinelli, Resmi KrishnankuttyRema, et al.
Cardiovascular Engineering and Technology|April 3, 2019
High-Frequency Fluctuations in Post-stenotic Patient Specific Carotid Stenosis Fluid Dynamics: A Computational Fluid Dynamics Strategy StudyViviana Mancini, Aslak W Bergersen, Jan Vierendeels, et al.
Biomechanics and Modeling in Mechanobiology|July 8, 2024
Toward a physiological model of vascular wall vibrations in the arteriovenous fistulaLuca Soliveri, David Bruneau, Johannes Ring, et al.
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