种植体和假体力学测试的关键观点

Q1 Medicine
E. Bonfante, Paulo G. Coelho, Paulo G. Coelho
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引用次数: 86

摘要

牙科种植体治疗中变量之间的相互作用程度对随机临床试验提出了挑战,这些试验试图以及时、公正和经济可行的方式回答问题。不同的种植体设计和相关的骨反应、种植面积、种植体体积材料、修复、基台和相关螺钉、固定模式(螺钉、固定或组合)以及水平种植体-基台匹配几何形状进一步增加了不同情况的复杂性。本文批判性地评价了用于表征种植体-假体复合物的最常见的机械测试方法。它试图提供深入了解关于临床前评估种植体生物力学和失效机制的临床相关问题的知情数据库的构建过程。讨论了单载荷失效、疲劳寿命、疲劳极限和阶跃应力加速寿命试验的使用,重点讨论了它们的可交付成果、弱点和优势。本文介绍了牙科陶瓷、树脂复合材料和钛材料的断口分析和实验室生产和实际生产失效之间的相关性。此外,还介绍了我们实验室用于评估一些种植体支持康复变量的机械表征研究的实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Critical Perspective on Mechanical Testing of Implants and Prostheses
The degree of interplay among variables in dental implant treatment presents a challenge to randomized clinical trials attempting to answer questions in a timely, unbiased, and economically feasible fashion. Further adding complexity to the different scenarios is the varied implant designs and related bone response, area of implantation, implant bulk material, restoration, abutments and related screws, fixation mode (screwed, fixed, or a combination), and horizontal implant-abutment matching geometry. This article critically appraises the most common mechanical testing methods used to characterize the implant-prostheses complex. It attempts to provide insight into the process of construction of an informed database of clinically relevant questions regarding preclinical evaluation of implant biomechanics and failure mechanisms. The use of single load to failure, fatigue life, fatigue limit, and step-stress accelerated life testing is discussed with emphasis on their deliverables, weaknesses, and strengths. Fractographic analysis and challenges in the correlation between laboratory- and in-service-produced failures of dental ceramics, resin composites, and titanium are introduced. In addition, examples are presented of mechanical characterization studies used in our laboratory to assess some implant-supported rehabilitation variables.
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来源期刊
Advances in Dental Research
Advances in Dental Research Medicine-Medicine (all)
CiteScore
8.20
自引率
0.00%
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