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激光烧结口腔种植体的特性及其在犬体内的评价。

Characterization and in vivo evaluation of laser sintered dental endosseous implants in dogs.

机构信息

Department of Biomaterials and Biomimetics, New York University, New York, New York, USA.

出版信息

J Biomed Mater Res B Appl Biomater. 2012 Aug;100(6):1566-73. doi: 10.1002/jbm.b.32725. Epub 2012 Jun 12.

Abstract

Laser metal sintering has shown promising results, but no comparison with other commercially available surface has been performed. This study sought to evaluate the biomechanical and histological early bone response to laser sintered implants relative to alumina-blasted/acid-etched (AB/AE). Surface topography was characterized by scanning electron microscopy and optical interferometry. Surface chemistry was assessed by x-ray photoelectron spectroscopy. Beagle dogs (n = 18) received 4 Ti-6Al-4V implants (one per surface) in each radius, remaining for 1, 3, and 6 weeks (n = 6 dogs per evaluation time) in vivo. Bone-to-implant contact (BIC) and bone area fraction occupancy (BAFO) were evaluated. Biomechanical evaluation comprised torque-to-interface failure. The laser sintered surface presented higher S(a) and S(q) than AB/AE. Chemistry assessment showed the alloy metallic components along with adsorbed carbon species. Significantly higher torque was observed at 1 (p < 0.02) and 6 week (p < 0.02) for the laser sintered, whereas at 3 week no significant differences were observed. Significantly higher BIC and BAFO was observed for the Laser Sintered (p < 0.04, and p < 0.03, respectively) only at 1 week, whereas no significant differences were observed at 3 and 6 weeks. The laser sintered implants presented biocompatible and osseoconductive properties and improved biomechanical response compared with the AB/AE surface only at 1 and 6 weeks in vivo.

摘要

激光金属烧结显示出有前景的结果,但尚未与其他市售表面进行比较。本研究旨在评估激光烧结植入物相对于氧化铝喷砂/酸蚀(AB/AE)的早期生物力学和组织学骨反应。通过扫描电子显微镜和光学干涉仪对表面形貌进行了表征。通过 X 射线光电子能谱法评估表面化学。将 18 只比格犬(n = 18)的每只桡骨各植入 1 个 Ti-6Al-4V 植入物(每个表面 1 个),体内分别在 1、3 和 6 周(每个评估时间 n = 6 只狗)进行评估。评估了骨与植入物接触(BIC)和骨面积分数占有率(BAFO)。生物力学评估包括扭矩至界面失效。激光烧结表面的 S(a)和 S(q)高于 AB/AE。化学评估显示合金金属成分和吸附的碳物种。在 1 周(p < 0.02)和 6 周(p < 0.02)时,激光烧结的扭矩明显更高,而在 3 周时未观察到显著差异。在 1 周时,仅激光烧结的 BIC 和 BAFO 显著更高(分别为 p < 0.04 和 p < 0.03),而在 3 周和 6 周时则没有显著差异。与 AB/AE 表面相比,激光烧结植入物仅在体内 1 周和 6 周时表现出生物相容性和骨传导性,并改善了生物力学反应。

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