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The significance of the surface properties of oxidized titanium to the bone response: special emphasis on potential biochemical bonding of oxidized titanium implant.

机译:氧化钛的表面性质对骨骼反应的重要性:特别强调氧化钛植入物的潜在生化键合。

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摘要

The aim of the present study is to investigate bone tissue reactions to various surface oxide properties, in particular to different surface oxide chemistry of oxidized titanium implants (grade 1). One control and three test screw-shaped implant groups were prepared. Controls were turned implants. Test implants, i.e. S implants, P implants and Ca implants were by the micro-arc oxidation (MAO) method. The surface characterizations were performed with X-ray photoelectron spectroscopy, Auger electron spectroscopy, scanning electron microscopy, X-ray diffractometry and TopScan 3D((R)). Eighty implants were inserted in the femora and tibiae of ten mature New Zealand white rabbits for 6 weeks. The removal torque values (RTQ) showed significant differences between S implants and controls (p=0.022), Ca implants and controls (p=0.0001), Ca implants and P implants (p=0.005) but did not show significant differences between the others (p>0.05). In addition, the bone to metal contact (BMC) around the entire implants demonstrated 186% increase in S implants, 232% increase in P implants and 272% increase in Ca implants when compared to the paired control groups. Based on the comparative analysis of the surface characteristics resulting different bone responses between all groups, it was concluded that surface chemistry and topography separately or together play important roles in the bone response to the oxidized implants.
机译:本研究的目的是研究骨组织对各种表面氧化物特性的反应,特别是对氧化钛植入物(1级)的不同表面氧化物化学的反应。准备一个对照组和三个测试螺钉形植入物组。对照变成植入物。测试植入物,即S植入物,P植入物和Ca植入物通过微弧氧化(MAO)方法进行。用X射线光电子能谱,俄歇电子能谱,扫描电子显微镜,X射线衍射和TopScan 3D(R)进行表面表征。将80个植入物插入十只成熟的新西兰白兔的股骨和胫骨中,持续6周。去除扭矩值(RTQ)在S种植体与对照组(p = 0.022),Ca种植体与对照(p = 0.0001),Ca种植体与P种植体(p = 0.005)之间显示出显着差异,但在其他种植体之间无显着差异(p> 0.05)。此外,与配对对照组相比,整个植入物周围的骨与金属接触(BMC)显示S植入物增加186%,P植入物增加232%,Ca植入物增加272%。根据对导致所有组之间不同的骨骼反应的表面特性的比较分析,可以得出结论,表面化学和形貌分别或共同在氧化植入物的骨骼反应中起重要作用。

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