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Guided bone augmentation using ceramic space-maintaining devices: the impact of chemistry

机译:使用陶瓷空间保持装置进行引导性骨增强:化学的影响

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摘要

The purpose of the study was to evaluate histologically, whether vertical bone augmentation can be achieved using a hollow ceramic space maintaining device in a rabbit calvaria model. Furthermore, the chemistry of microporous hydroxyapatite and zirconia were tested to determine which of these two ceramics are most suitable for guided bone generation. 24 hollow domes in two different ceramic materials were placed subperiosteal on rabbit skull bone. The rabbits were sacrificed after 12 weeks and the histology results were analyzed regarding bone-to-material contact and volume of newly formed bone. The results suggest that the effect of the microporous structure of hydroxyapatite seems to facilitate for the bone cells to adhere to the material and that zirconia enhance a slightly larger volume of newly formed bone. In conclusion, the results of the current study demonstrated that ceramic space maintaining devices permits new bone formation and osteoconduction within the dome.
机译:该研究的目的是组织学评估兔颅盖模型中是否可以使用空心陶瓷空间保持装置实现垂直骨增大。此外,测试了微孔羟基磷灰石和氧化锆的化学性质,以确定这两种陶瓷中哪一种最适合引导骨生成。将两种不同陶瓷材料制成的24个空心穹顶放在兔头骨骨的骨膜下。 12周后处死兔子,并分析关于骨与材料的接触以及新形成的骨的体积的组织学结果。结果表明,羟基磷灰石的微孔结构的作用似乎有助于骨细胞粘附到材料上,并且氧化锆增强了刚形成的骨骼的体积。总而言之,当前研究的结果表明,陶瓷空间保持装置可以在圆顶内形成新的骨骼并促进骨传导。

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