Computational evaluation of an extra-aortic elastic-wrap applied to  simulated aging anisotropic human aorta models

Computational evaluation of an extra-aortic elastic-wrap applied to simulated aging anisotropic human aorta models

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Computational evaluation of an extra-aortic elastic-wrap applied to simulated aging anisotropic human aorta models

Model-Based Therapy Planning Allows Prediction of Haemodynamic Outcome after Aortic Valve Replacement

Material Biomomentum

Frontiers Evaluation of Computational Methodologies for Accurate Prediction of Wall Shear Stress and Turbulence Parameters in a Patient-Specific Aorta

Statistical Atlases and Computational Models of The Heart Imagin 2013, PDF, Aorta

High-Throughput Methods in the Discovery and Study of Biomaterials and Materiobiology

Research articles Scientific Reports

Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates variation in elastic energy distribution across the aortic zone zero - ScienceDirect, test vivo

Applied Sciences, Free Full-Text

Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates variation in elastic energy distribution across the aortic zone zero - ScienceDirect, test vivo

Data of Group C (adults).

An experimental evaluation of a concept to improve conventional aortic prostheses - ScienceDirect

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