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Bone|July 30, 2019
A review on computer modeling of bone piezoelectricity and its application to bone adaptation and regenerationMelika Mohammadkhah, Dragan Marinkovic, Manfred Zehn, et al.
Frontiers in Bioengineering and Biotechnology|December 2, 2020
Mechano-Biological Computer Model of Scaffold-Supported Bone Regeneration: Effect of Bone Graft and Scaffold Structure on Large Bone Defect Tissue PatterningCamille Perier-Metz, Georg N Duda, Sara Checa
Journal of Biomechanics|April 4, 2025
Effects of nucleotomy on segmental flexibility: A numerical analysisMaxim Bashkuev, Hendrik Schmidt, Sara Checa, et al.
Frontiers in Bioengineering and Biotechnology|September 26, 2022
A mechanobiological computer optimization framework to design scaffolds to enhance bone regenerationCamille Perier-Metz, Georg N Duda, Sara Checa
Biomechanics and Modeling in Mechanobiology|June 7, 2021
Initial mechanical conditions within an optimized bone scaffold do not ensure bone regeneration - an in silico analysisCamille Perier-Metz, Georg N Duda, Sara Checa
Frontiers in Bioengineering and Biotechnology|April 18, 2022
A 3D <i>in Silico</i> Multi-Tissue Evolution Model Highlights the Relevance of Local Strain Accumulation in Bone Fracture RemodelingCamille Perier-Metz, Laurent Corté, Rachele Allena, et al.
Frontiers in Bioengineering and Biotechnology|April 1, 2022
The Degradation of Synthetic Polymeric Scaffolds With Strut-like Architecture Influences the Mechanics-dependent Repair Process of an Osteochondral Defect <i>in Silico</i>Martina Tortorici, Ansgar Petersen, Georg N Duda, et al.
Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|June 11, 2009
Corroboration of mechanobiological simulations of tissue differentiation in an in vivo bone chamber using a lattice-modeling approachHanifeh Khayyeri, Sara Checa, Magnus Tägil, et al.
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