Demineralization characteristics of cortical bone under voltage application in phosphate-buffered saline
Author:
Affiliation:
1. Department of Intelligent Machines and System Engineering, Hirosaki University
Publisher
Japan Society of Mechanical Engineers
Subject
Biomedical Engineering
Link
https://www.jstage.jst.go.jp/article/jbse/17/2/17_21-00293/_pdf
Reference24 articles.
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2. Bigi, A., Fini, M., Bracci, B., Boanini, E., Torricelli, P., Giavaresi, G., Aldini, N. N., Facchini, A., Sbaiz, F. and Giardino, R., The response of bone to nanocrystalline hydroxyapatite-coated Ti13Nb11Zr alloy in an animal model, Biomaterials, Vol.29, Issue 11 (2008), pp.1730-1736.
3. Carvalho, É. B. S., Veronesi, G. F., Manfredi, G. G. P., Damante, C. A., Sant'Ana, A. C. P., Greghi, S. L. A., Zangrando, M. S. R., Consolaro, A. and Rezende, M. L. R., Bone demineralization improves onlay graft consolidation: A histological study in rat calvaria, Jounal of Periodontology, Vol.92, Issue 6 (2020), pp.e1-e10.
4. Chen, N. X. and Moe, S. M., Pathophysiology of vascular calcification, Current Osteoporosis Reports, Vol.13 (2015), pp.372-380.
5. Danilchenko, S., Kalinkevich, A., Zhovner, M., Kuznetsov, V., Li, H. and Wang, J., Anisotropic aspects of solubility behavior in the demineralization of cortical bone revealed by XRD analysis, Journal of Biological Physics, Vol.45 (2019), pp.77-88.
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