A computer simulation of internal bone adaptation based on 3D BMU-Progression in response to damage and disuse

Thomas Rüberg, Jose Manuel Garcia-Aznar, Manuel Doblare

Research output: Chapter in Book/Report/Conference proceedingConference contributionResearchpeer-review

Original languageEnglish
Title of host publicationInternational Congress on Computational Bioengineering
Publisher.
Pages700-710
Publication statusPublished - 2003
EventInternational Congress on Computational Bioengineering - Zaragoza, Spain
Duration: 24 Sep 200326 Sep 2003

Conference

ConferenceInternational Congress on Computational Bioengineering
CountrySpain
CityZaragoza
Period24/09/0326/09/03

Cite this

Rüberg, T., Garcia-Aznar, J. M., & Doblare, M. (2003). A computer simulation of internal bone adaptation based on 3D BMU-Progression in response to damage and disuse. In International Congress on Computational Bioengineering (pp. 700-710). ..

A computer simulation of internal bone adaptation based on 3D BMU-Progression in response to damage and disuse. / Rüberg, Thomas; Garcia-Aznar, Jose Manuel; Doblare, Manuel.

International Congress on Computational Bioengineering. ., 2003. p. 700-710.

Research output: Chapter in Book/Report/Conference proceedingConference contributionResearchpeer-review

Rüberg, T, Garcia-Aznar, JM & Doblare, M 2003, A computer simulation of internal bone adaptation based on 3D BMU-Progression in response to damage and disuse. in International Congress on Computational Bioengineering. ., pp. 700-710, International Congress on Computational Bioengineering, Zaragoza, Spain, 24/09/03.
Rüberg T, Garcia-Aznar JM, Doblare M. A computer simulation of internal bone adaptation based on 3D BMU-Progression in response to damage and disuse. In International Congress on Computational Bioengineering. . 2003. p. 700-710
Rüberg, Thomas ; Garcia-Aznar, Jose Manuel ; Doblare, Manuel. / A computer simulation of internal bone adaptation based on 3D BMU-Progression in response to damage and disuse. International Congress on Computational Bioengineering. ., 2003. pp. 700-710
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