Cite

Dimitriou, R., Jones, E., McGonagle, D., Giannoudis, P. V. (2011). Bone regeneration: Current concepts and future directions. BMC Med., 9, 66–71.10.1186/1741-7015-9-66312371421627784Search in Google Scholar

Ehret, C., Aid-Launais, R., Sagardoy, T., Siadous, R., Bareille, R., Rey, S., Pechev, S., Etienne, L., Kalisky, J., de Mones, E., Letourneur, D., Amedee Vilamitjana, J. (2017). Strontium-doped hydroxyapatite polysaccharide materials effect on ectopic bone formation. PLoS One, 12 (9), e0184663.10.1371/journal.pone.0184663559899328910401Search in Google Scholar

Kim, D. G. (2014). Can dental cone beam computed tomography assess bone mineral density? J. Bone Metab., 21 (2), 117–126.10.11005/jbm.2014.21.2.117407526525006568Search in Google Scholar

Landi, E., Tampieri, A., Celotti, G., Sprio, S., Sandri, M., Logroscino, G. (2007). Sr-substituted hydroxyapatites for osteoporotic bone replacement, Acta Biomater., 3 (6), 961–969.Search in Google Scholar

Li, Y., Luo, E., Zhu, S., Li, J., Zhang, L., Hu, J. (2015). Cancellous bone response to strontium-doped hydroxyapatite in osteoporotic rats. J. Appl. Biomater. Funct. Mater.,13 (1), 28–34.10.5301/jabfm.500016824744229Search in Google Scholar

Lode, A., Heiss, C., Knapp, G., Thomas, J., Nies, B., Gelinsky, M., Schumacher, M. (2017). Strontium-modified premixed calcium phosphate cements for the therapy of osteoporotic bone defects. Acta Biomater., 1, 30664–30665.Search in Google Scholar

Ratner, B. D., Hoffman, A. S., Schoen, F. J., Lemons, J. E. (2013). Biomaterials Science: An Introduction to Materials in Medicine. 3rd edn. Elsevier. 1573 pp.Search in Google Scholar

Saint-Jean, S. J., Camire, C. L., Nevsten, P., Hansen, S., Ginebra, M. P. (2005). Study of the reactivity and in vitro bioactivity of Sr-substituted α-TCP cement. J. Mater. Sci. Mater. Med., 16, 993–1001.10.1007/s10856-005-4754-z16388381Search in Google Scholar

Salma, I., Petronis, S., Pilmane, M., Skagers, A., Zalite, V., Locs, J. (2015). Local recovery of bone tissue in osteoporotic rabbit hip after implantation of HAP/TCP bioceramic granules. In: 27th European Conference on Biomaterials: Final Programme and Book of Abstracts, Krakov, Poland, 30th August – 3rd September, 2015. Scientific Publishing House “Akapit”, Krakow, p. 409. Available at: http://www.proceedings.com/28321.html (accessed 18.02.2019).Search in Google Scholar

Schlickewei, C. W., Laaff, G., Andresen, A., Klatte, T. O., Rueger, J. M., Ruesing, J., Epple, M., Lehmann, W. (2015). Bone augmentation using a new injectable bone graft substitute by combining calcium phosphate and bisphosphonate as composite: An animal model. J. Orthop. Surg. Res., 10, 116.10.1186/s13018-015-0263-z451361826205381Search in Google Scholar

Wang, W., Yeung, K. W. K. (2017). Bone grafts and biomaterials substitutes for bone defect repair: A review. Bioact. Mater., 2, 224–247.10.1016/j.bioactmat.2017.05.007593565529744432Search in Google Scholar

eISSN:
1407-009X
Language:
English
Publication timeframe:
6 times per year
Journal Subjects:
General Interest, Mathematics, General Mathematics