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Journal of Biomechanics|December 19, 2001
Anisotropic bone remodelling model based on a continuum damage-repair theoryM Doblaré, J M GarcíaJournal of Biomechanics|August 17, 2001
Application of an anisotropic bone-remodelling model based on a damage-repair theory to the analysis of the proximal femur before and after total hip replacementM Doblaré, J M GarcíaAnnals of Biomedical Engineering|December 17, 2008
Does increased bone-cement interface strength have negative consequences for bulk cement integrity? A finite element studyM A Pérez, J M García-Aznar, M DoblaréJournal of Biomechanics|June 15, 2010
Scaffold microarchitecture determines internal bone directional growth structure: a numerical studyJ A Sanz-Herrera, M Doblaré, J M García-AznarActa Biomaterialia|August 30, 2008
On scaffold designing for bone regeneration: A computational multiscale approachJ A Sanz-Herrera, J M García-Aznar, M DoblaréJournal of Biomechanical Engineering|May 5, 2005
Finite element prediction of proximal femoral fracture patterns under different loadsM J Gómez-Benito, J M García-Aznar, M DoblaréPhilosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences|April 22, 2009
A mathematical approach to bone tissue engineeringJ A Sanz-Herrera, J M García-Aznar, M DoblaréBiomechanics and Modeling in Mechanobiology|December 25, 2008
A reaction-diffusion model for long bones growthD A Garzón-Alvarado, J M García-Aznar, M DoblaréComputers in Biology and Medicine|May 19, 2009
Appearance and location of secondary ossification centres may be explained by a reaction-diffusion mechanismD A Garzón-Alvarado, J M García-Aznar, M DoblaréInjury|January 23, 2004
Finite element study of intramedullary osteosynthesis in the treatment of trochanteric fractures of the hip: Gamma and PFNB Seral, J M García, J Cegoñino, et al.Pageof 100