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LTI碳、碳涂层氧化铝和未涂层氧化铝牙科植入物的定量组织学评估

Quantitative histologic evaluation of LTI carbon, carbon-coated aluminum oxide and uncoated aluminum oxide dental implants.

作者信息

Cook S D, Weinstein A M, Klawitter J J, Kent J N

出版信息

J Biomed Mater Res. 1983 May;17(3):519-38. doi: 10.1002/jbm.820170311.

Abstract

The response of mandibular bone to identical geometry LTI carbon, carbon-coated aluminum oxide, and uncoated aluminum oxide blade-type dental implants in baboons for 2 years was evaluated using histologic, microradiographic, and scanning electron microscopic methods. In addition, a quantitative histologic analysis was performed identifying the type, amount, and distribution of tissue surrounding the dental implant systems. This is the final phase of a study investigating the effect of implant elastic modulus and implant surface chemical composition on the performance of dental implants. Previous studies have utilized clinical and radiographic evaluations, postretrieval mechanical testing, and finite element stress analysis to evaluate the dental implant performance. The results of the histologic study revealed a direct implant-bone interface with no intervening soft tissue in 16 of the 21 implants (76%). A fibrous tissue interface was observed in 5 of 21 implants (24%). Quantitative histologic results for the implants with a direct implant-bone interface showed statistically larger crestal cortical plates (p less than 0.05) and greater area fraction crestal cancellous bone (p less than 0.05) in the LTI carbon implant compared to the carbon-coated and uncoated aluminum oxide implants. The carbon-coated and uncoated aluminum oxide implants demonstrated statistically greater area fraction cancellous bone at the inferior region of the implant (p less than 0.05) and thinned and reduced crestal cortical plates when compared to the LTI carbon implants. The results indicate that significant stress shielding of the crestal bone had occurred with the rigid carbon-coated and uncoated aluminum oxide implants when compared to the LTI carbon implants which had a material elastic modulus similar to cortical bone. Based upon the histologic results, it appears that the LTI carbon implants with the direct implant-bone interface exhibited a greater potential for long-term successful performance compared to the aluminum oxide substrate implants.

摘要

使用组织学、显微放射照相术和扫描电子显微镜方法,评估了狒狒下颌骨对相同几何形状的低温各向同性(LTI)碳、碳涂层氧化铝和未涂层氧化铝叶片型牙科植入物2年的反应。此外,还进行了定量组织学分析,以确定牙科植入系统周围组织的类型、数量和分布。这是一项研究植入物弹性模量和植入物表面化学成分对牙科植入物性能影响的研究的最后阶段。先前的研究利用临床和放射学评估、取出后的力学测试以及有限元应力分析来评估牙科植入物的性能。组织学研究结果显示,21枚植入物中有16枚(76%)呈现直接的植入物-骨界面,无中间软组织。21枚植入物中有5枚(24%)观察到纤维组织界面。与碳涂层和未涂层氧化铝植入物相比,具有直接植入物-骨界面的植入物的定量组织学结果显示,LTI碳植入物的嵴顶皮质板在统计学上更大(p小于0.05),嵴顶松质骨的面积分数更高(p小于0.05)。与LTI碳植入物相比,碳涂层和未涂层氧化铝植入物在植入物下部区域的松质骨面积分数在统计学上更大(p小于0.05),嵴顶皮质板变薄且减少。结果表明,与材料弹性模量与皮质骨相似的LTI碳植入物相比,刚性的碳涂层和未涂层氧化铝植入物导致嵴顶骨出现明显的应力遮挡。基于组织学结果,与氧化铝基质植入物相比,具有直接植入物-骨界面的LTI碳植入物似乎具有更大的长期成功性能潜力。

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