Cells, growth factors and bioactive surface properties in a mechanobiological model of implant healing

Author:

Guérin G.,Ambard D.,Swider P

Publisher

Elsevier BV

Subject

Rehabilitation,Biomedical Engineering,Orthopedics and Sports Medicine,Biophysics

Reference68 articles.

1. The interface zone of inorganic implants in vivo: Titanium implants in bone;Albrektsson;Annals of Biomedical Engineering,1983

2. Transforming growth factor-β in skeletal development and maintenance;Alliston,2000

3. Ambard, D., Pedrono, A, Swider, P., 2004a. A predictive numerical model of the periprosthetic tissue formation surrounding a stable implant, 50th Annual Meeting of Orthopaedic Research Society, USA.

4. Ambard, D., Bechtold, J.E., Søballe, K., Swider, P., 2004b. Prediction of the periprosthetic tissue mineralization in a stable implant coupling cell diffusion in a porous media. In: Sixth International Symposium on Computer Methods in Biomechanics and Biomedical Engineering, Spain.

5. Ambard, D., Bechtold, J.E., Søballe, K., Swider, P., 2004c. Prediction of the periprosthetic tissue mineralization in a stable implant coupling cell diffusion in a porous media. In: Sixth International Symposium on Computer Methods in Biomechanics and Biomedical Engineering.

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