Analysis of Mechanical Behavior of Biomaterials of HA/Ti for Bone Tissue Regeneration Using Finite Element Method
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-46936-7_4
Reference20 articles.
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3. Kanczler, J.M., Wells, J.A., Gibbs, D.M.R., Marshall, K.M., Tang, D.K.O., Oreffo, R.O.C.: Chapter 50 - Bone tissue engineering and bone regeneration. In: Lanza, R., Langer, R., Vacanti, J.P., Atala, A. (ed.): Principles of Tissue Engineering 5th edn. pp. 917–935. Academic Press (2020) ISBN 9780128184226. https://doi.org/10.1016/B978-0-12-818422-6.00052-6
4. Niedhart, C., Pingsmann, A., Jurgens, C., Marr, A., Blatt, R., Niethard, F.U.: Complications after harvesting of autologous bone from the ventral and dorsal iliac crest – a prospective: controlled study. Z. Orthop. Ihre Grenzgeb. 141(4), 481–486 (2003)
5. Bagde, A.D., Kuthe, A.M., Nagdeve, S.R., et al.: Geometric modeling and finite element simulation for architecture design of 3D printed bio-ceramic scaffold used in bone tissue engineering. J. Indian Inst. Sci. 99, 361–374 (2019). https://doi.org/10.1007/s41745-019-00120-0
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