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CHAPTER 2
[122] L. Xu, A. Yamamoto, In vitro degradation of biodegradable polymer-coated magnesium under cell culture condition, Appl. Surf. Sci. 258 (2012) 6353–6358. doi:10.1016/j.apsusc.2012.03.036.
[123] N.I.Z. Abidin, B. Rolfe, H. Owen, J. Malisano, D. Martin, J. Hofstetter, P.J. Uggowitzer, A. Atrens, The in vivo and in vitro cor- rosion of high-purity magnesium and magnesium alloys WZ21 and AZ91, Corros. Sci. 75 (2013) 354–366.
[124] P.K. Bowen, A. Drelich, J. Drelich, J. Goldman, Rates of in vivo (arterial) and in vitro biocorrosion for pure magnesium, J. Biomed. Mater. Res. Part A. 103 (2015) 341–349.
[125] C. Di Mario, H.U.W. Griffiths, O. Goktekin, N. Peeters, J.A.N. Verbist, M. Bosiers, K. Deloose, B. Heublein, R. Rohde, V. Kasese, others, Drug-eluting bioabsorbable magnesium stent, J. Interv. Cardiol. 17 (2004) 391–395.
[126] P. Zartner, M. Buettner, H. Singer, M. Sigler, First biodegradable metal stent in a child with congenital heart disease: evalu- ation of macro and histopathology, Catheter. Cardiovasc. Interv. 69 (2007) 443–446.
[127] J.X. Yang, F.Z. Cui, I.-S. Lee, Y. Zhang, Q.S. Yin, H. Xia, S.X. Yang, In vivo biocompatibility and degradation behavior of Mg alloy coated by calcium phosphate in a rabbit model., J. Biomater. Appl. 27 (2012) 153–64. doi:10.1177/0885328211398161. [128] B. Schaller, N. Saulacic, T. Imwinkelried, S. Beck, E.W.Y. Liu, J. Gralla, K. Nakahara, W. Hofstetter, T. Iizuka, In vivo degrada- tion of magnesium plate-screw osteosynthesis implant systems: Soft and hard tissue response in a calvarial model in miniature pigs, J. Cranio-Maxillofacial Surg. (2015).
[129] R. Waksman, R. Pakala, P.K. Kuchulakanti, R. Baffour, D. Hellinga, R. Seabron, F.O. Tio, E. Wittchow, S. Hartwig, C. Harder, others, Safety and efficacy of bioabsorbable magnesium alloy stents in porcine coronary arteries, Catheter. Cardiovasc. Interv. 68 (2006) 607–617.
[130] B. Heublein, R. Rohde, V. Kaese, M. Niemeyer, W. Hartung, A. Haverich, Biocorrosion of magnesium alloys: a new principle in cardiovascular implant technology?, Heart. 89 (2003) 651–656.
[131] P. Barlis, J. Tanigawa, C. Di Mario, Coronary bioabsorbable magnesium stent: 15-month intravascular ultrasound and optical coherence tomography findings, Eur. Heart J. 28 (2007) 2319.
[132] M.A. Surmeneva, R.A. Surmenev, Microstructure characterization and corrosion behaviour of a nano-hydroxyapatite coat- ing deposited on AZ31 magnesium alloy using radio frequency magnetron sputtering, Vacuum. 117 (2015) 60–62. doi:10.1016/j. vacuum.2015.04.004.
[133] R. Xu, X. Yang, X. Zhang, M. Wang, P. Li, Y. Zhao, G. Wu, P.K. Chu, Effects of carbon dioxide plasma immersion ion implan- tation on the electrochemical properties of AZ31 magnesium alloy in physiological environment, Appl. Surf. Sci. 286 (2013) 257–260. doi:10.1016/j.apsusc.2013.09.060.
[134] M.J. Zhao, C. Cai, L. Wang, Z. Zhang, J.Q. Zhang, Effect of zinc immersion pretreatment on the electro-deposition of Ni onto AZ91D magnesium alloy, Surf. Coatings Technol. 205 (2010) 2160–2166. doi:10.1016/j.surfcoat.2010.08.129.
[135] Y. Ren, J. Huang, B. Zhang, K. Yang, Preliminary study of biodegradation of AZ31B magnesium alloy, Front. Mater. Sci. China. 1 (2007) 401–404. doi:10.1007/s11706-007-0073-2.
[136] M.A. Surmeneva, A.I. Tyurin, T.M. Mukhametkaliyev, T.S. Pirozhkova, I.A. Shuvarin, M.S. Syrtanov, R.A. Surmenev, Enhance- ment of the mechanical properties of AZ31 magnesium alloy via nanostructured hydroxyapatite thin films fabricated via radio- frequency magnetron sputtering, J. Mech. Behav. Biomed. Mater. 46 (2015) 127–136. doi:10.1016/j.jmbbm.2015.02.025.
[137] R.-C. Zeng, Y. Hu, S.-K. Guan, H.-Z. Cui, E.-H. Han, Corrosion of magnesium alloy AZ31: The influence of bicarbonate, sul- phate, hydrogen phosphate and dihydrogen phosphate ions in saline solution, Corros. Sci. 86 (2014) 171–182. doi:10.1016/j. corsci.2014.05.006.
[138] Y. Song, D. Shan, R. Chen, F. Zhang, E.-H. Han, Biodegradable behaviors of AZ31 magnesium alloy in simulated body fluid, Mater. Sci. Eng. C. 29 (2009) 1039–1045.
[139] B.R. Sunil, T.S.S. Kumar, U. Chakkingal, V. Nandakumar, M. Doble, V.D. Prasad, M. Raghunath, In vitro and in vivo studies of biodegradable fine grained AZ31 magnesium alloy produced by equal channel angular pressing, Mater. Sci. Eng. C. 59 (2016) 356–367.
[140] Y. Jang, Z. Tan, C. Jurey, B. Collins, A. Badve, Z. Dong, C. Park, C.S. Kim, J. Sankar, Y. Yun, Systematic understanding of cor- rosion behavior of plasma electrolytic oxidation treated AZ31 magnesium alloy using a mouse model of subcutaneous implant., Mater. Sci. Eng. C. Mater. Biol. Appl. 45 (2014) 45–55. doi:10.1016/j.msec.2014.08.052.
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