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首页> 外文期刊>Computational and mathematical methods in medicine >Comparative Evaluation of Osseointegrated Dental Implants Based on Platform-Switching Concept: Influence of Diameter, Length, Thread Shape, and In-Bone Positioning Depth on Stress-Based Performance
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Comparative Evaluation of Osseointegrated Dental Implants Based on Platform-Switching Concept: Influence of Diameter, Length, Thread Shape, and In-Bone Positioning Depth on Stress-Based Performance

机译:基于平台开关概念的骨整合牙科植入物的比较评价:直径,长度,螺纹形状和骨骼定位深度对基于应力的性能的影响

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摘要

This study aimed to investigate the influence of implant design (in terms of diameter, length, and thread shape), in-bone positioning depth, and bone posthealing crestal morphology on load transfer mechanisms of osseointegrated dental implants based on platform-switching concept. In order to perform an effective multiparametric comparative analysis, 11 implants different in dimensions and in thread features were analyzed by a linearly elastic 3-dimensional finite element approach, under a static load. Implant models were integrated with the detailed model of a maxillary premolar bone segment. Different implant in-bone positioning levels were modeled, considering also different posthealing crestal bone morphologies. Bone overloading risk was quantified by introducing proper local stress measures, highlighting that implant diameter is a more effective design parameter than the implant length, as well as that thread shape and thread details can significantly affect stresses at peri-implant bone, especially for short implants. Numerical simulations revealed that the optimal in-bone positioning depth results from the balance of 2 counteracting effects: cratering phenomena and bone apposition induced by platform-switching configuration. Proposed results contribute to identify the mutual influence of a number of factors affecting the bone-implant loading transfer mechanisms, furnishing useful insights and indications for choosing and/or designing threaded osseointegrated implants.
机译:本研究旨在探讨植入物设计(在直径,长度和螺纹形状),骨定位深度和骨骼运动型嵴形态的影响,基于平台开关概念的骨整合牙科植入物的负荷转移机制。为了进行有效的多级比较分析,通过线性弹性三维有限元方法在静态负载下分析了尺寸和螺纹特征中不同的11种植入物。植入模型与上颌前骨段的详细模型集成在一起。考虑到不同的运动嵴骨形态,模拟不同的植入植入骨质定位水平。通过引入适当的局部应力措施来量化骨重载风险,突出植入直径是比植入长度更有效的设计参数,以及螺纹形状和线细节可以显着影响Peri植入骨的应力,特别是对于短植入物。数值模拟显示,最佳的骨对骨定位深度从2次抵抗效果的平衡产生:平台切换配置诱导的陨石坑现象和骨接。提出的结果有助于确定影响骨植入载荷转移机制的许多因素的相互影响,为选择和/或设计螺纹骨整合植入物提供有用的见解和适应症。

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