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The effect of platform switching on the levels of metal ion release from different implant–abutment couples

机译:平台切换对不同种植体-基台对中金属离子释放水平的影响

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摘要

The improved peri-implant bone response demonstrated by platform switching may be the result of reduced amounts of metal ions released to the surrounding tissues. The aim of this study was to compare the levels of metal ions released from platform-matched and platform-switched implant–abutment couples as a result of accelerated corrosion. Thirty-six titanium alloy (Ti-6Al-4V) and cobalt–chrome alloy abutments were coupled with titanium cylinders forming either platform-switched or platform-matched groups (n=6). In addition, 18 unconnected samples served as controls. The specimens were subjected to accelerated corrosion by static immersion in 1% lactic acid for 1 week. The amount of metal ions ion of each test tube was measured using inductively coupled plasma mass spectrometry. Scanning electron microscope (SEM) images and energy dispersive spectroscopy X-ray analyses were performed pre- and post-immersion to assess corrosion at the interface. The platform-matched groups demonstrated higher ion release for vanadium, aluminium, cobalt, chrome, and molybdenum compared with the platform-switched groups (P<0.05). Titanium was the highest element to be released regardless of abutment size or connection (P<0.05). SEM images showed pitting corrosion prominent on the outer borders of the implant and abutment platform surfaces. In conclusion, implant–abutment couples underwent an active corrosion process resulting in metal ions release into the surrounding environment. The highest amount of metal ions released was recorded for the platform-matched groups, suggesting that platform-switching concept has a positive effect in reducing the levels of metal ion release from the implant–abutment couples.
机译:通过平台切换显示的改善的种植体周围骨反应可能是释放到周围组织的金属离子量减少的结果。这项研究的目的是比较由于腐蚀加速而从平台匹配和平台切换的植入物-基台对释放的金属离子的水平。三十六只钛合金(Ti-6Al-4V)和钴铬合金基台与钛圆柱体结合,形成了平台切换组或平台匹配组(n = 6)。另外,将18个未连接的样本用作对照。通过将试样静态浸泡在1%乳酸中1周,使其经受加速腐蚀。使用电感耦合等离子体质谱法测量每个试管的金属离子离子的量。浸没之前和之后进行扫描电子显微镜(SEM)图像和能量色散光谱X射线分析,以评估界面处的腐蚀。与平台转换组相比,平台匹配组显示出更高的钒,铝,钴,铬和钼离子释放率(P <0.05)。无论基台尺寸或连接方式如何,钛都是要释放的最高元素(P <0.05)。 SEM图像显示在植入物和基台平台表面的外边界上明显的点蚀。总之,植入物-基台对经历了积极的腐蚀过程,导致金属离子释放到周围环境中。平台匹配组记录到的金属离子释放量最高,这表明平台切换概念对降低植入物-基台对的金属离子释放量具有积极作用。

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