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Silvia Hervas-Raluy

Showing results (1-10 of 8) with videos related to

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APL Bioengineering|August 7, 2023
Fluid flow to mimic organ function in 3D <i>in vitro</i> modelsYago Juste-Lanas, Silvia Hervas-Raluy, José Manuel García-Aznar, et al.
Cell Adhesion & Migration|May 2, 2022
Unravelling cell migration: defining movement from the cell surfaceFrancisco Merino-Casallo, Maria Jose Gomez-Benito, Silvia Hervas-Raluy, et al.
Plos One|December 20, 2024
Correction: A new 3D finite element-based approach for computing cell surface tractions assuming nonlinear conditionsSilvia Hervas-Raluy, Maria Jose Gomez-Benito, Carlos Borau, et al.
Plos One|April 14, 2021
A new 3D finite element-based approach for computing cell surface tractions assuming nonlinear conditionsSilvia Hervas-Raluy, Maria Jose Gomez-Benito, Carlos Borau-Zamora, et al.
Journal of the Mechanical Behavior of Biomedical Materials|January 11, 2023
Computational modelling of the mechanical behaviour of protein-based hydrogelsÁngela Pérez-Benito, Carla Huerta-López, Jorge Alegre-Cebollada, et al.
Bone|June 12, 2021
Multiscale modeling of bone tissue mechanobiologyJosé Manuel García-Aznar, Gabriele Nasello, Silvia Hervas-Raluy, et al.
Journal of Theoretical Biology|June 1, 2022
A theoretical analysis of the scale separation in a model to predict solid tumour growthBárbara de Melo Quintela, Silvia Hervas-Raluy, Jose Manuel Garcia-Aznar, et al.
Computers in Biology and Medicine|April 15, 2023
Tumour growth: An approach to calibrate parameters of a multiphase porous media model based on in vitro observations of Neuroblastoma spheroid growth in a hydrogel microenvironmentSilvia Hervas-Raluy, Barbara Wirthl, Pedro E Guerrero, et al.
Pageof 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
APL Bioengineering|August 7, 2023
Fluid flow to mimic organ function in 3D <i>in vitro</i> modelsYago Juste-Lanas, Silvia Hervas-Raluy, José Manuel García-Aznar, et al.
Cell Adhesion & Migration|May 2, 2022
Unravelling cell migration: defining movement from the cell surfaceFrancisco Merino-Casallo, Maria Jose Gomez-Benito, Silvia Hervas-Raluy, et al.
Plos One|December 20, 2024
Correction: A new 3D finite element-based approach for computing cell surface tractions assuming nonlinear conditionsSilvia Hervas-Raluy, Maria Jose Gomez-Benito, Carlos Borau, et al.
Plos One|April 14, 2021
A new 3D finite element-based approach for computing cell surface tractions assuming nonlinear conditionsSilvia Hervas-Raluy, Maria Jose Gomez-Benito, Carlos Borau-Zamora, et al.
Journal of the Mechanical Behavior of Biomedical Materials|January 11, 2023
Computational modelling of the mechanical behaviour of protein-based hydrogelsÁngela Pérez-Benito, Carla Huerta-López, Jorge Alegre-Cebollada, et al.
Bone|June 12, 2021
Multiscale modeling of bone tissue mechanobiologyJosé Manuel García-Aznar, Gabriele Nasello, Silvia Hervas-Raluy, et al.
Journal of Theoretical Biology|June 1, 2022
A theoretical analysis of the scale separation in a model to predict solid tumour growthBárbara de Melo Quintela, Silvia Hervas-Raluy, Jose Manuel Garcia-Aznar, et al.
Computers in Biology and Medicine|April 15, 2023
Tumour growth: An approach to calibrate parameters of a multiphase porous media model based on in vitro observations of Neuroblastoma spheroid growth in a hydrogel microenvironmentSilvia Hervas-Raluy, Barbara Wirthl, Pedro E Guerrero, et al.
Pageof 1