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Comparative in vitro study and biomechanical testing of two different magnesium alloys

机译:两种不同镁合金的体外比较研究和生物力学测试

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摘要

In this in vitro study, magnesium plates of ZEK100 and MgCa0.8 alloy similar to common titanium alloy osteosynthesis plates were investigated as degradable biomedical materials with a focus on primary stability. Immersion tests were performed in Hank's Balanced Salt Solution at 37. The bending strength of the samples was determined using the four-point bending test according to ISO 9585:1990. The initial strength of the noncorroded ZEK100 plate was 11% greater than that of the MgCa0.8 plate; both were approximately 65% weaker than a titanium plate. The bending strength was determined after 48 and 96 h of immersion in Hank's Balanced Salt Solution; both magnesium alloys decreased by approximately 7% after immersion for 96 h. The degradation rate and the Mg2+ release of ZEK100 were lower than those of MgCa0.8. Strong pitting and filiform corrosion were observed in the MgCa0.8 samples after 96 h of immersion. The surface of the ZEK100 plates exhibited only small areas of filiform corrosion. The results of this in vitro study indicate that the ZEK100 alloy may be more suitable for biomedical applications. © The Author(s) 2013 Reprints and permissions: sagepub.co.uk/journalsPermissions.nav.
机译:在这项体外研究中,研究了与普通钛合金骨合成板相似的ZEK100和MgCa0.8合金镁板作为可降解生物医学材料,重点是初步稳定性。在Hank的平衡盐溶液中于37进行浸入测试。根据ISO 9585:1990使用四点弯曲测试确定样品的弯曲强度。未腐蚀的ZEK100板的初始强度比MgCa0.8板的初始强度高11%。两者均比钛板弱约65%。在汉克的平衡盐溶液中浸泡48和96小时后,确定弯曲强度;两种镁合金在浸泡96小时后均下降了约7%。 ZEK100的降解速率和Mg2 +释放均低于MgCa0.8。浸入96 h后,在MgCa0.8样品中观察到强烈的点蚀和丝状腐蚀。 ZEK100板的表面仅显示出小面积的丝状腐蚀。这项体外研究的结果表明,ZEK100合金可能更适合生物医学应用。 ©作者2013转载和许可:sagepub.co.uk/journalsPermissions.nav。

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