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用于促进骨生长到多孔涂层植入物中的酸蚀微观纹理。

Acid-etched microtexture for enhancement of bone growth into porous-coated implants.

作者信息

Hacking S A, Harvey E J, Tanzer M, Krygier J J, Bobyn J D

机构信息

Division of Orthopaedics, McGill University, Montreal, Quebec, Canada.

出版信息

J Bone Joint Surg Br. 2003 Nov;85(8):1182-9. doi: 10.1302/0301-620x.85b8.14233.

Abstract

We designed an in vivo study to determine if the superimposition of a microtexture on the surface of sintered titanium beads affected the extent of bone ingrowth. Cylindrical titanium intramedullary implants were coated with titanium beads to form a porous finish using commercial sintering techniques. A control group of implants was left in the as-sintered condition. The test group was etched in a boiling acidic solution to create an irregular surface over the entire porous coating. Six experimental dogs underwent simultaneous bilateral femoral intramedullary implantation of a control implant and an acid etched implant. At 12 weeks, the implants were harvested in situ and the femora processed for undecalcified, histological examination. Eight transverse serial sections for each implant were analysed by backscattered electron microscopy and the extent of bone ingrowth was quantified by computer-aided image analysis. The extent of bone ingrowth into the control implants was 15.8% while the extent of bone ingrowth into the etched implants was 25.3%, a difference of 60% that was statistically significant. These results are consistent with other research that documents the positive effect of microtextured surfaces on bone formation at an implant surface. The acid etching process developed for this study represents a simple method for enhancing the potential of commonly available porous coatings for biological fixation.

摘要

我们设计了一项体内研究,以确定烧结钛珠表面的微观纹理叠加是否会影响骨长入的程度。使用商业烧结技术,将圆柱形钛髓内植入物涂上钛珠,形成多孔表面。对照组的植入物保持烧结后的状态。测试组在沸腾的酸性溶液中蚀刻,以在整个多孔涂层上形成不规则表面。六只实验犬同时在双侧股骨进行髓内植入,一侧植入对照植入物,另一侧植入酸蚀植入物。在12周时,原位取出植入物,并对股骨进行不脱钙的组织学检查。通过背散射电子显微镜对每个植入物的八个横向连续切片进行分析,并通过计算机辅助图像分析对骨长入的程度进行量化。对照植入物的骨长入程度为15.8%,而酸蚀植入物的骨长入程度为25.3%,相差60%,具有统计学意义。这些结果与其他研究一致,这些研究证明了微观纹理表面对植入物表面骨形成的积极作用。本研究开发的酸蚀工艺是一种简单的方法,可以增强常用多孔涂层用于生物固定的潜力。

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