has been cited by the following article(s):
[1]
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High pulsatile load decreases arterial stiffness: an ex vivo study
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Frontiers in …,
2021 |
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[2]
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Fluid-Structure Interaction of Large Viscoelastic Vessels Under Pulsatile Conditions
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2020 |
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[3]
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A bilinear structural constitutive model for strain rate-dependent behaviour of human diaphragm tissue
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2019 |
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[4]
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Characterizing the mechanical properties of the aortic wall
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2019 |
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[5]
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Characterization of Aorta and Diaphragm at High Strain Rate Loading
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2019 |
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[6]
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High strain rate compressive behaviour of human heart
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International Journal of Experimental and Computational Biomechanics,
2018 |
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[7]
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High rate failure properties of human aortic tissue under longitudinal extension
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International Journal of Experimental and Computational Biomechanics,
2018 |
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[8]
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Large Deformation Characterization of Porcine Thoracic Aortas: Inverse Modeling Fitting of Uniaxial and Biaxial Tests
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Journal of Biomedical Science and Engineering,
2015 |
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[9]
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Biomechanical Evaluation of Ascending Aortic Aneurysms
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BioMed Research International,
2014 |
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[10]
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Biomechanical Properties of Human Aorta from Dynamic Biaxial Loading
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Bioengineering Conference (NEBEC), 2013 39th Annual Northeast,
2013 |
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[11]
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Creation of a computational simulation of maternal trauma in motor vehicle accident
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ProQuest Dissertations Publishing,
2013 |
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[12]
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Computer-aided Modeling and Experimental Study of a New Surgical Instrument
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2013 |
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[13]
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Viscoelastic properties of the passive mechanical behavior of the porcine carotid artery: Influence of proximal and distal positions
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Biorheology,
2012 |
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[14]
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Effect of deformation rate on the Mullins effect in arteries (June 2011)
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13th Workshop of Applied Mechanics,
2011 |
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[15]
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Películas comestibles nanoestructuradas de almidón de camote (Ipomea batata)
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2011 |
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[1]
|
High Pulsatile Load Decreases Arterial Stiffness: An ex vivo Study
Frontiers in Physiology,
2021
DOI:10.3389/fphys.2021.741346
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|
|
[2]
|
A bilinear structural constitutive model for strain rate-dependent behaviour of human diaphragm tissue
International Journal of Crashworthiness,
2019
DOI:10.1080/13588265.2019.1583423
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[3]
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Large Deformation Characterization of Porcine Thoracic Aortas: Inverse Modeling Fitting of Uniaxial and Biaxial Tests
Journal of Biomedical Science and Engineering,
2015
DOI:10.4236/jbise.2015.810069
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[4]
|
Biomechanical Evaluation of Ascending Aortic Aneurysms
BioMed Research International,
2014
DOI:10.1155/2014/820385
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[5]
|
Biomechanical Properties of Human Aorta from Dynamic Biaxial Loading
2013 39th Annual Northeast Bioengineering Conference,
2013
DOI:10.1109/NEBEC.2013.57
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