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Biomechanics and Modeling in Mechanobiology|May 2, 2023
Constituent-based quasi-linear viscoelasticity: a revised quasi-linear modelling framework to capture nonlinear viscoelasticity in arteriesAlessandro Giudici, Koen W F van der Laan, Myrthe M van der Bruggen, et al.Biomechanics and Modeling in Mechanobiology|July 14, 2020
Tethering, evagination, and vesiculation via cell-cell interactions in microvascular flowRobert J Asaro, Qiang Zhu, Ian C MacDonaldBiomechanics and Modeling in Mechanobiology|July 19, 2020
Hierarchical modeling of force generation in cardiac muscleFrançois Kimmig, Matthieu CaruelBiomechanics and Modeling in Mechanobiology|July 18, 2020
Machine learning methods to support personalized neuromusculoskeletal modellingDavid J Saxby, Bryce Adrian Killen, C Pizzolato, et al.Biomechanics and Modeling in Mechanobiology|June 29, 2020
Modeling lung tissue dynamics and injury under pressure and impact loadingJ D ClaytonBiomechanics and Modeling in Mechanobiology|August 18, 2020
A novel system for dynamic stretching of cell cultures reveals the mechanobiology for delivering better negative pressure wound therapyRona Katzengold, Alexey Orlov, Amit GefenBiomechanics and Modeling in Mechanobiology|April 11, 2015
The influence and biomechanical role of cartilage split line pattern on tibiofemoral cartilage stress distribution during the stance phase of gaitVickie B Shim, Thor F Besier, David G Lloyd, et al.Biomechanics and Modeling in Mechanobiology|April 12, 2021
Depth and strain rate-dependent mechanical response of chondrocytes in reserve zone cartilage subjected to compressive loadingMasumeh Kazemi, John L WilliamsBiomechanics and Modeling in Mechanobiology|July 2, 2020
Implementing a micromechanical model into a finite element code to simulate the mechanical and microstructural response of arteriesDaniele Bianchi, Claire Morin, Pierre BadelBiomechanics and Modeling in Mechanobiology|May 15, 2023
Origins of brain tissue elasticity under multiple loading modes by analyzing the microstructure-based modelsPeng Wang, Zhibo Du, Huibin Shi, et al.Pageof 215