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种植体表面粗糙度和负荷对种植体周围骨形成的影响。

Effect of implant surface roughness and loading on peri-implant bone formation.

作者信息

Vandamme Katleen, Naert Ignace, Vander Sloten Jozef, Puers Robert, Duyck Joke

机构信息

Department of Prosthetic Dentistry, Biomaterials Research Group, Catholic University Leuven, Leuven, Belgium.

出版信息

J Periodontol. 2008 Jan;79(1):150-7. doi: 10.1902/jop.2008.060413.

Abstract

BACKGROUND

Critical factors for the establishment of osseointegration are the implant surface microtopography and the local mechanical environment. The present study evaluated the bone response around a turned (T) and a roughened (R) implant for either an unloaded or a well-controlled loaded situation.

METHODS

Bone chambers were installed in the tibia of 20 rabbits. In each of the chambers, two identical displacement-controlled loading experiments were performed: 30 microm for 400 cycles at 1 Hz, three times a week for 9 weeks versus 0-microm implant displacement. A linear mixed model and a logistic mixed model with alpha = 5% were set to study the significant effect of the surface texture on the peri-implant bone response in the unloaded (T-0 microm versus R-0 microm) and the loaded (T-30 microm versus R-30 microm) mode.

RESULTS

Results indicated no microtopographic dependence of the bone response further away from the implant in unloaded and loaded conditions. For a load-free implant, osseointegration seemed to occur with a higher incidence at a roughened compared to a turned implant surface. In the presence of loading, the topographic dependency of the osteogenic activity at the interface was overruled by the loading-related bone response, revealing no significant differences in osseointegration incidence between T and R.

CONCLUSION

A predominant effect of the interfacial mechanical environment over the implant surface characteristics on the differentiating cell population is suggested.

摘要

背景

种植体表面微观形貌和局部力学环境是实现骨结合的关键因素。本研究评估了在未加载或加载控制良好的情况下,车削(T)种植体和粗糙(R)种植体周围的骨反应。

方法

在20只兔子的胫骨中安装骨腔。在每个骨腔中,进行了两个相同的位移控制加载实验:在1Hz频率下位移30微米,循环400次,每周三次,持续9周,与种植体位移为0微米的情况进行对比。设定α = 5%的线性混合模型和逻辑混合模型,以研究表面纹理在未加载(T-0微米与R-0微米)和加载(T-30微米与R-30微米)模式下对种植体周围骨反应的显著影响。

结果

结果表明,在未加载和加载条件下,远离种植体处的骨反应不存在微观形貌依赖性。对于无负载的种植体,与车削种植体表面相比,粗糙种植体表面发生骨结合的发生率似乎更高。在有负载的情况下,界面处成骨活性的形貌依赖性被与负载相关的骨反应所掩盖,T和R之间的骨结合发生率没有显著差异。

结论

提示界面力学环境对分化细胞群体的影响比种植体表面特征更为显著。

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