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

Por um escritor misterioso
Last updated 12 novembro 2024
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates  variation in elastic energy distribution across the aortic zone zero -  ScienceDirect
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates  variation in elastic energy distribution across the aortic zone zero -  ScienceDirect
PDF) In vivo determination of elastic properties of the human aorta based on 4D ultrasound data
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates  variation in elastic energy distribution across the aortic zone zero -  ScienceDirect
PDF) Biomechanical characterization of the passive response of the thoracic aorta in chronic hypoxic newborn lambs using an evolutionary strategy
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates  variation in elastic energy distribution across the aortic zone zero -  ScienceDirect
Fluid–structure interaction modeling of compliant aortic valves using the lattice Boltzmann CFD and FEM methods
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates  variation in elastic energy distribution across the aortic zone zero -  ScienceDirect
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates variation in elastic energy distribution across the aortic zone zero - ScienceDirect
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates  variation in elastic energy distribution across the aortic zone zero -  ScienceDirect
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
Enlarged lumen volume of proximal aortic segment
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates  variation in elastic energy distribution across the aortic zone zero -  ScienceDirect
Morphology of Abdominal Aortic Aneurysms and correlation with biomechanical tests of aneurysmal wall fragments - Annals of Vascular Surgery
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates  variation in elastic energy distribution across the aortic zone zero -  ScienceDirect
PDF) Effects of Aneurysm on the Directional, Regional, and Layer Distribution of Residual Strains in Ascending Thoracic Aorta
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates  variation in elastic energy distribution across the aortic zone zero -  ScienceDirect
PDF) Development of an FEA Framework for Analysis of Subject-Specific Aortic Compliance based on 4D Flow MRI
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates  variation in elastic energy distribution across the aortic zone zero -  ScienceDirect
Study of Effect of Boundary Conditions on Patient-Specific Aortic Hemodynamics
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates  variation in elastic energy distribution across the aortic zone zero -  ScienceDirect
PDF) Mechanical characterization of arteries: comparison of square and cruciform biaxial tests using inverse modeling technique
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates  variation in elastic energy distribution across the aortic zone zero -  ScienceDirect
PDF) Full-field bulge test for planar anisotropic tissues: Part II – A thin shell method for determining material parameters and comparison of two distributed fiber modeling approaches
Ex vivo biaxial load testing analysis of aortic biomechanics demonstrates  variation in elastic energy distribution across the aortic zone zero -  ScienceDirect
Biomechanics of Aortic Dissection: A Comparison of Aortas Associated With Bicuspid and Tricuspid Aortic Valves

© 2014-2024 likytut.eu. All rights reserved.