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首页> 外文期刊>American Journal of Orthodontics and Dentofacial Orthopedics >BoneCeramic graft regenerates alveolar defects but slows orthodontic tooth movement with less root resorption
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BoneCeramic graft regenerates alveolar defects but slows orthodontic tooth movement with less root resorption

机译:骨陶瓷移植物再生牙槽缺损,但减慢正畸牙齿运动,减少牙根吸收

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摘要

Introduction: BoneCeramic (Straumann, Basel, Switzerland) can regenerate bone in alveolar defects after tooth extraction, but it is unknown whether it is feasible to move a tooth through BoneCeramic grafting sites. The objective of this study was to investigate 3-dimensional real-time root resorption and bone responses in grafted sites during orthodontic tooth movement. Methods: Sixty 5-week-old rats were randomly assigned to 3 groups to receive BoneCeramic, natural bovine cancellous bone particles (Bio-Oss; Geistlich Pharma, Wolhusen, Switzerland), or no graft, after the extraction of the maxillary left first molar. After 4 weeks, the maxillary left second molar was moved into the extraction site for 28 days. Dynamic bone microstructures and root resorption were evaluated using in-vivo microcomputed tomography. Stress distribution and corresponding tissue responses were examined by the finite element method and histology. Mixed model analysis of variance was performed to compare the differences among time points with Bonferroni post-hoc tests at the significance level of P < 0.05. Results: The BoneCeramic group had the least amount of tooth movement and root resorption volumes and craters, and the highest bone volume fraction, trabecular number, and mean trabecular thickness, followed by the Bio-Oss and the control groups. The highest stress accumulated in the cervical region of the mesial roots. Conclusions: BoneCeramic has better osteoconductive potential and induces less root resorption compared with Bio-Oss grafting and naturally recovered extraction sites.
机译:简介:BoneCeramic(Straumann,巴塞尔,瑞士)可以在拔牙后使牙槽缺损中的骨骼再生,但是将牙齿移动通过BoneCeramic移植部位是否可行尚不得而知。这项研究的目的是调查正畸牙齿移动过程中3维实时牙根吸收和植骨部位的骨反应。方法:将60只5周大的大鼠随机分为3组,分别在上颌左第一磨牙摘除后接受BoneCeramic天然牛松质骨颗粒(Bio-Oss; Geistlich Pharma,Wolhusen,瑞士)或不进行移植。 4周后,将上颌左第二磨牙移入提取部位28天。动态骨微结构和牙根吸收使用体内显微计算机断层扫描进行评估。通过有限元方法和组织学检查应力分布和相应的组织反应。进行了方差混合模型分析,以比较Bonferroni事后检验在不同时间点之间的差异,显着性水平为P <0.05。结果:BoneCeramic组的牙齿移动量,根吸收量和火山口数量最少,而骨体积分数,小梁数量和平均小梁厚度最高,其次是Bio-Oss和对照组。最高应力累积在中根的颈区。结论:与Bio-Oss嫁接和自然恢复的提取部位相比,BoneCeramic具有更好的骨传导潜能,并引起较少的根吸收。

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