Voir la notice de l'article provenant de la source Math-Net.Ru
@article{PFMT_2019_2_a2, author = {Liu Yiming and A. V. Rogachev and M. A. Yarmolenko and A. A. Rogachev and Jiang Xiaohong and A. S. Rudenkov}, title = {Molecular structure of single-layer and bi-layer coatings, which are perspective when used in osteosynthesis processes}, journal = {Problemy fiziki, matematiki i tehniki}, pages = {21--27}, publisher = {mathdoc}, number = {2}, year = {2019}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/PFMT_2019_2_a2/} }
TY - JOUR AU - Liu Yiming AU - A. V. Rogachev AU - M. A. Yarmolenko AU - A. A. Rogachev AU - Jiang Xiaohong AU - A. S. Rudenkov TI - Molecular structure of single-layer and bi-layer coatings, which are perspective when used in osteosynthesis processes JO - Problemy fiziki, matematiki i tehniki PY - 2019 SP - 21 EP - 27 IS - 2 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/PFMT_2019_2_a2/ LA - ru ID - PFMT_2019_2_a2 ER -
%0 Journal Article %A Liu Yiming %A A. V. Rogachev %A M. A. Yarmolenko %A A. A. Rogachev %A Jiang Xiaohong %A A. S. Rudenkov %T Molecular structure of single-layer and bi-layer coatings, which are perspective when used in osteosynthesis processes %J Problemy fiziki, matematiki i tehniki %D 2019 %P 21-27 %N 2 %I mathdoc %U http://geodesic.mathdoc.fr/item/PFMT_2019_2_a2/ %G ru %F PFMT_2019_2_a2
Liu Yiming; A. V. Rogachev; M. A. Yarmolenko; A. A. Rogachev; Jiang Xiaohong; A. S. Rudenkov. Molecular structure of single-layer and bi-layer coatings, which are perspective when used in osteosynthesis processes. Problemy fiziki, matematiki i tehniki, no. 2 (2019), pp. 21-27. http://geodesic.mathdoc.fr/item/PFMT_2019_2_a2/
[1] Jintao Xiao, A.V. Rogachev, V.A. Yarmolenko, A.A. Rogachev, Yiming Liu, Xiaohong Jiang, Dongping Sun, M.A. Yarmolenko, “Formation features, structure and properties of bioactive coatings based on phosphate-calcium layers, deposited by a low energy electron beam”, Surface Coatings Technology, 359 (2019), 6–15 | DOI
[2] Zhi-yu Xue, Mingli Yang, Dingguo Xu, “Nucleation of Biomimetic Hydroxyapatite Nanoparticles on the Surface of Type I Collagen: Molecular Dynamics Investigations”, J. Phys. Chem. C, 123 (2019), 2533–2543 | DOI
[3] Peixin Zhu, Y. Masuda, K. Koumoto, “The effect of surface charge on hydroxyapatite nucleation”, Biomaterials, 25 (2004), 3915–3921 | DOI
[4] J. Tao, A. Fijneman, J. Wan, S. Prajapati, K. Mukherjee, A. Fernandez-Martinez, J. Moradian-Oldak, J.J. De Yoreo, “Control of Calcium Phosphate Nucleation and Transformation through Interactions of Enamelin and Amelogenin Exhibits the “Goldilocks Effect””, Cryst. Growth Des., 18 (2018), 7391–7400 | DOI
[5] S.-H. Rhee, J. Tanaka, “Effect of citric acid on the nucleation of hydroxyapatite in a simulated body fluid”, Biomaterials, 20 (1999), 2155–2160 | DOI
[6] Y. Xu, H. Li, J. Wu, Q. Yang, D. Jiang, B. Qiao, “Polydopamine-induced hydroxyapatite coating facilitates hydroxyapatite / polyamide 66 implant osteogenesis: an in vitro and in vivo evaluation”, Int. J. Nanomedicine, 13 (2018), 8179–8193 | DOI
[7] N. Ramesh, S. C. Moratti, G. J. Dias, “Hydroxyapatite-polymer biocomposites for bone regeneration: A review of current trends”, Journal of Biomedical Materials Research, 106 (2018), 2046–2057 | DOI
[8] A.P.S. Prasanna, G.D. Venkatasubbu, “Sustained release of amoxicillin from hydroxyapatite nanocomposite for bone infections”, Progress in Biomaterials, 7 (2018), 289–296 | DOI
[9] I. Avila, K. Pantchev, J. Holopainen, M. Ritala, J. Tuukkanen, “Adhesion and mechanical properties of nanocrystalline hydroxyapatite coating obtained by conversion of atomic layer deposited calcium carbonate on titanium substrate”, Journal of Materials Science: Materials in Medicine, 29 (2018), 111 | DOI
[10] R.C. Olley, M. Andiappan, P.M. Frost, “An up to 50-year follow-up of crown and veneer survival in a dental practice”, J. Prosthet. Dent., 119 (2018), 935–941 | DOI
[11] Y. Su, I. Cockerill, Y. Wang, Y-X. Qin, L. Chang, Y. Zheng, D. Zhu, “Zinc-Based Biomaterials for Regeneration and Therapy”, Trends in Biotechnology, 37 (2019), 428–441 | DOI
[12] N. Kanzaki, K. Onuma, G. Treboux, S. Tsutsumi, A. Ito, “Inhibitory Effect of Magnesium and Zinc on Crystallization Kinetics of Hydroxyapatite (0001) Face”, J. Phys. Chem. B, 104 (2000), 4189–4194 | DOI
[13] N.C. Reger, A.K. Bhargava, I. Ratha, B. Kundu, V.K. Balla, “Structural and phase analysis of multi-ion doped hydroxyapatite for biomedical applications”, Ceramics International, 45 (2019), 252–263 | DOI
[14] A.S. Alex, R.S. Rajeev, V. Sekkar, C. Gouri, “The role of organoclay on the properties of Polymethylsilsesquioxane: A systematic study”, Journal of macromolecular science, part a: pure and applied chemistry, 54:12 (2017), 885–893 | DOI
[15] H. Seki, T. Kajiwara, Y. Abe, T. Gunji, “Synthesis and structure of ladder polymethylsilsesquioxanes from sila-functionalized cyclotetrasiloxanes”, J. Organomet. Chem., 695 (2010), 1363–1369 | DOI
[16] J. Ma, L. Shi, Y. Shi, S. Luo, J. Xu, “Pyrolysis of Polymethylsilsesquioxane”, J. Appl. Polym. Sci., 85 (2002), 1077–1086 | DOI
[17] J. Xiao, A.V. Rogachev, V.A. Yarmolenko, A.A. Rogachev, Xiaohong Jiang, Dongping Sun, M.A. Yarmolenko, “Magnesium containing coatings formed by a low-energy electron beam”, Surface Coatings Technology, 349 (2018), 61–70 | DOI
[18] A.G. Feehan, M.R. Zacharin, A.S. Lim, P.J. Simm, “A comparative study of quality of life, functional and bone outcomes in osteogenesis imperfecta with bisphosphonate therapy initiated in childhood or adulthood”, Bone, 113 (2018), 137–143 | DOI
[19] S. Sousa, P. Clezardin, “Bone-Targeted Therapies in Cancer-Induced Bone Disease”, Calcified Tissue Internationa, 102 (2018), 227–250 | DOI
[20] J.D. Bobyn, K. McKenzie, D. Karabasz, J.J. Krygier, “Locally delivered bisphosphonate for enhancement of bone formation and implant fixation”, J. Bone Joint Surg. Am., 91 (2009), 23–31 | DOI
[21] L. Matuszewski, K. Turzanska, A. Matuszewska, M. Jablonski, “Effect of implanted bisphosphonate-enriched cement on the trabecular microarchitecture of bone in a rat model using microcomputed tomography”, Int. Ortho., 37 (2013), 1187–1193 | DOI
[22] J. Ma, L. Shi, Y. Shi, S. Luo, J. Xu, “Pyrolysis of Polymethylsilsesquioxane”, Journal of Applied Polymer Science, 85 (2002), 1077–1086 | DOI