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首页> 外文期刊>Clinical oral implants research >Biomechanical and histomorphometric comparison between zirconia implants with varying surface textures and a titanium implant in the maxilla of miniature pigs.
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Biomechanical and histomorphometric comparison between zirconia implants with varying surface textures and a titanium implant in the maxilla of miniature pigs.

机译:具有不同表面纹理的氧化锆植入物与微型猪上颌骨中的钛植入物之间的生物力学和组织形态学比较。

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BACKGROUND: Mechanical properties and biocompatibility make zirconia ceramics suitable implant material. The characteristics of tooth-color like, the ability to be machined and the low plaque affinity make zirconia especially suitable as a dental implant material. The influence of surface modification on the osseointegration of this material has not been extensively investigated. PURPOSE: Long-term investigations with titanium implants have shown superior biomechanical results with the sandblasted acid-etched (SLA) surface, demonstrating a high bone-implant interaction. The objective of this study was to compare two different zirconia surface topographies biomechanically and histologically with the well-documented titanium SLA surface. MATERIAL AND METHODS: Zirconia implants with either a machined (ZrO2m) or a sandblasted (rough, ZrO2r) surface were manufactured with the exact same cylindrical shape with a standard ITI thread configuration as the SLA titanium implants. The incisors 2 and 3 were removedfrom both sides of the maxillae of 13 adult miniature pigs and the tissues left to heal for 6 months. After this time period the animals received a total of 78 implants using a randomized scheme, with the titanium SLA implant used as an only individual reference. After healing periods of 4, 8, and 12 weeks 20, 24, and 25 implants, respectively, were subjected to removal torque tests (RTQ) as the main biomechanical analysis of the of the study. A fewer number was resected on bloc, embedded in methylmethacrylat and analyzed for their direct bone apposition under a light microscope. RESULTS: Surface analysis revealed the highest surface roughness for the SLA-implant, followed by ZrO2r and ZrO2m. The turned ZrO2m implants showed statistically significant lower RTQ values than the other two implants types after 8 and 12 weeks, while the SLA implant showed significantly higher RTQs values than ZrO2r surface after 8 weeks. Differences in the bone apposition were observed in the histomorphometric analysis using lightmicroscopy for all surfaces at any time point. CONCLUSION: The findings suggest that ZrO2r implants can achieve a higher stability in bone than ZrO2m implants. Roughening the turned zirconia implants enhances bone apposition and has a beneficial effect on the interfacial shear strength.
机译:背景:机械性能和生物相容性使氧化锆陶瓷成为合适的植入材料。牙齿颜色的特征,可加工的能力和低的牙菌斑亲和力使氧化锆特别适合用作牙科植入物材料。表面改性对这种材料的骨整合的影响尚未得到广泛研究。目的:对钛植入物的长期研究显示,喷砂酸蚀(SLA)表面具有优异的生物力学效果,表明了高的骨-植入物相互作用。这项研究的目的是比较生物学上和组织学上两种不同的氧化锆表面形貌与文献充分记录的钛SLA表面。材料和方法:机械加工的(ZrO2m)或喷砂的(粗糙的ZrO2r)表面的氧化锆植入物与SLA钛植入物具有完全相同的圆柱形状,并具有标准的ITI螺纹结构。从13只成年小型猪的上颌骨的两侧切除门齿2和3,并让组织愈合6个月。在这段时间之后,动物使用随机方案总共接受了78个植入物,其中钛SLA植入物用作唯一的参考。在第4、8和12周的愈合期后,分别对20、24和25个植入物进行去除扭矩测试(RTQ),作为研究的主要生物力学分析。在块上切除了较少的数目,包埋在甲基丙烯酸甲酯中,并在光学显微镜下分析了它们的直接骨附着。结果:表面分析表明,SLA植入物的表面粗糙度最高,其次是ZrO2r和ZrO2m。在8周和12周后,翻转的ZrO2m植入物显示出比其他两种植入物显着更低的RTQ值,而SLA植入物在8周后显示出显着高于ZrO2r表面的RTQ值。使用光学显微镜在任何时间点对所有表面进行组织形态计量学分析时,观察到骨骼并置的差异。结论:研究结果表明,ZrO2r植入物比ZrO2m植入物在骨骼中具有更高的稳定性。粗化车削的氧化锆植入物可增强骨骼附着力,并对界面剪切强度产生有益影响。

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