首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Bone response to endosseous titanium implants surface-modified by blasting and chemical treatment: a histomorphometric study in the rabbit femur.
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Bone response to endosseous titanium implants surface-modified by blasting and chemical treatment: a histomorphometric study in the rabbit femur.

机译:经爆破和化学处理表面改性的骨内钛植入物的骨反应:兔股骨的组织形态计量学研究。

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摘要

This study evaluated the effects of the addition of oxide structure with submicron-scale porous morphology on the periimplant bone response around titanium (Ti) implants with microroughened surfaces. Hydroxyapatite-blasted Ti implants with (experimental) and without (control) a porous oxide structure produced by chemical treatment were investigated in a rabbit femur model. Surface characterizations and in vivo bone response at 4 and 8 weeks after implantation were compared. The experimental implants had submicron-scale porous surface structure consisted of anatase and rutile phase, and the original R(a) values produced by blasting were preserved. The histomorphometric evaluation demonstrated statistically significantly increased bone-to-implant contact (BIC) for experimental implants, both in the three best consecutive threads (p < 0.01) and all threads (p < 0.05) at 4 weeks. There was no remarkable difference in the BIC% or bone area percentage between the two groups at 8 weeks. The porous Ti oxide surface enhanced periimplant bone formation around the Ti implants with microroughened surfaces at the early healing stage. Based on the results of this study, the addition of crystalline Ti oxide surface with submicron-sized porous morphology produced by chemical treatment may be an effective approach for enhancing the osseointegration of Ti implants with microroughened surfaces by increasing early bone-implant contact.
机译:这项研究评估了添加具有亚微米级多孔形态的氧化物结构对具有微粗糙表面的钛(Ti)植入物周围的植入物周围骨反应的影响。在兔股骨模型中研究了羟基磷灰石喷吹的钛植入物,该植入物具有(实验)和不具有(对照)通过化学处理产生的多孔氧化物结构。比较了植入后4周和8周的表面特征和体内骨骼反应。实验植入物具有由锐钛矿和金红石相组成的亚微米级多孔表面结构,并保留了喷砂产生的原始R(a)值。组织形态计量学评估显示,在4周时,三个最佳连续螺纹(p <0.01)和所有螺纹(p <0.05)均在统计学上显着增加了实验植入物的骨-植入物接触(BIC)。两组在8周时的BIC%或骨面积百分比无显着差异。在早期愈合阶段,多孔的氧化钛表面增强了钛植入物周围的种植体周围骨的形成,并具有微粗糙的表面。根据这项研究的结果,通过化学处理添加具有亚微米级多孔形态的结晶钛氧化物表面可能是通过增加早期骨-植入物接触来增强具有微粗糙表面的钛植入物骨整合的有效方法。

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