Publication: Bone regeneration by the osteoconductivity of porous titanium implants manufactured by selective laser melting: A histological and micro computed tomography study in the rabbit
Bone regeneration by the osteoconductivity of porous titanium implants manufactured by selective laser melting: A histological and micro computed tomography study in the rabbit
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de Wild, M., Schumacher, R., Mayer, K., Schkommodau, E., Thoma, D., Bredell, M., Kruse Gujer, A., Grätz, K. W., & Weber, F. E. (2013). Bone regeneration by the osteoconductivity of porous titanium implants manufactured by selective laser melting: A histological and micro computed tomography study in the rabbit. Tissue Engineering. Part A, 19(23–24), 2645–2654. https://doi.org/10.1089/ten.TEA.2012.0753
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The treatment of large bone defects still poses a major challenge in orthopaedic and cranio-maxillofacial surgery. One possible solution could be the development of personalized porous titanium-based implants that are designed to meet all mechanical needs with a minimum amount of titanium and maximum osteopromotive properties so that it could be combined with growth factor-loaded hydrogels or cell constructs to realize advanced bone tissue engineering strategies. Such implants could prove useful for mandibular reconstruction, spinal f
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de Wild, M., Schumacher, R., Mayer, K., Schkommodau, E., Thoma, D., Bredell, M., Kruse Gujer, A., Grätz, K. W., & Weber, F. E. (2013). Bone regeneration by the osteoconductivity of porous titanium implants manufactured by selective laser melting: A histological and micro computed tomography study in the rabbit. Tissue Engineering. Part A, 19(23–24), 2645–2654. https://doi.org/10.1089/ten.TEA.2012.0753