Damien Lacroix
Damien Lacroix
Verified email at sheffield.ac.uk
Cited by
Cited by
A mechano-regulation model for tissue differentiation during fracture healing: analysis of gap size and loading
D Lacroix, PJ Prendergast
Journal of biomechanics 35 (9), 1163-1171, 2002
Nanotechnology in regenerative medicine: the materials side
E Engel, A Michiardi, M Navarro, D Lacroix, JA Planell
Trends in biotechnology 26 (1), 39-47, 2008
Simulation of tissue differentiation in a scaffold as a function of porosity, Young's modulus and dissolution rate: application of mechanobiological models in tissue engineering
DP Byrne, D Lacroix, JA Planell, DJ Kelly, PJ Prendergast
Biomaterials 28 (36), 5544-5554, 2007
Biomechanical model to simulate tissue differentiation and bone regeneration: application to fracture healing
D Lacroix, PJ Prendergast, G Li, D Marsh
Medical and Biological Engineering and Computing 40 (1), 14-21, 2002
Finite element study of scaffold architecture design and culture conditions for tissue engineering
AL Olivares, È Marsal, JA Planell, D Lacroix
Biomaterials 30 (30), 6142-6149, 2009
A finite element study of mechanical stimuli in scaffolds for bone tissue engineering
C Sandino, JA Planell, D Lacroix
Journal of biomechanics 41 (5), 1005-1014, 2008
Three-dimensional finite element analysis of glenoid replacement prostheses: a comparison of keeled and pegged anchorage systems
D Lacroix, LA Murphy, PJ Prendergast
J. Biomech. Eng. 122 (4), 430-436, 2000
Micro-finite element models of bone tissue-engineering scaffolds
D Lacroix, A Chateau, MP Ginebra, JA Planell
Biomaterials 27 (30), 5326-5334, 2006
The influence of the scaffold design on the distribution of adhering cells after perfusion cell seeding
FPW Melchels, B Tonnarelli, AL Olivares, I Martin, D Lacroix, J Feijen, ...
Biomaterials 32 (11), 2878-2884, 2011
Commentary: deciphering the link between architecture and biological response of a bone graft substitute
M Bohner, Y Loosli, G Baroud, D Lacroix
Acta biomaterialia 7 (2), 478-484, 2011
How does the geometry affect the internal biomechanics of a lumbar spine bi-segment finite element model? Consequences on the validation process
J Noailly, HJ Wilke, JA Planell, D Lacroix
Journal of biomechanics 40 (11), 2414-2425, 2007
In vitro bone cell models: impact of fluid shear stress on bone formation
C Wittkowske, GC Reilly, D Lacroix, CM Perrault
Frontiers in Bioengineering and Biotechnology 4, 87, 2016
Computational modelling of the mechanical environment of osteogenesis within a polylactic acid–calcium phosphate glass scaffold
JL Milan, JA Planell, D Lacroix
Biomaterials 30 (25), 4219-4226, 2009
Computer-aided design and finite-element modelling of biomaterial scaffolds for bone tissue engineering
D Lacroix, JA Planell, PJ Prendergast
Philosophical Transactions of the Royal Society A: Mathematical, Physical …, 2009
Three-dimensional simulation of fracture repair in the human tibia
D Lacroix, PJ Prendergast
Computer Methods in Biomechanics & Biomedical Engineering 5 (5), 369-376, 2002
Finite element study of a novel intervertebral disc substitute
J Noailly, D Lacroix, JA Planell
Spine 30 (20), 2257-2264, 2005
A multi-structural single cell model of force-induced interactions of cytoskeletal components
S Barreto, CH Clausen, CM Perrault, DA Fletcher, D Lacroix
Biomaterials 34 (26), 6119-6126, 2013
Simulation of fracture healing in the tibia: mechanoregulation of cell activity using a lattice modeling approach
DP Byrne, D Lacroix, PJ Prendergast
Journal of orthopaedic research 29 (10), 1496-1503, 2011
Comparison of four methods to simulate swelling in poroelastic finite element models of intervertebral discs
F Galbusera, H Schmidt, J Noailly, A Malandrino, D Lacroix, HJ Wilke, ...
Journal of the mechanical behavior of biomedical materials 4 (7), 1234-1241, 2011
The effect of sustained compression on oxygen metabolic transport in the intervertebral disc decreases with degenerative changes
A Malandrino, J Noailly, D Lacroix
PLoS Comput Biol 7 (8), e1002112, 2011
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