首页> 外文期刊>The International journal of periodontics & restorative dentistry >Biomechanical repercussions of bone resorption related to biologic width: a finite element analysis of three implant-abutment configurations.
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Biomechanical repercussions of bone resorption related to biologic width: a finite element analysis of three implant-abutment configurations.

机译:骨吸收与生物宽度有关的生物力学影响:三种种植体-基台结构的有限元分析。

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摘要

Most biomechanical studies of implant-supported restorations have not taken into account the biologic changes that occur following exposure of the implants to the oral environment. Therefore, the present finite element analysis study was designed to compare the biomechanical response of three types of implant-abutment configurations both before and after establishment of a new biologic width. The three functional units studied were: a 5-mm implant platform connected with an external hexagon to a 5-mm-diameter abutment (type 1), a 5-mm implant platform connected with an external hexagon to a 4.1-mm-diameter abutment (type 2), and a 4.8-mm implant platform connected with an internal hexagon to a 4.1-mm-diameter abutment (type 3). The type 3 design, which combined platform switching with an internal connection, exhibited the smallest distortions in stress distribution after bone modeling, and the stress was distributed over the entire contact surface most smoothly and uniformly. Bone resorption following creation of the biologic width changes the biomechanical behavior of a restoration. In this study, the two implant-abutment designs featuring a smaller-diameter abutment on a larger-diameter implant platform achieved better results than the implant featuring the same-diameter implant platform and abutment, even though their initial bio?mechanical load potential was lower. (Int J Periodontics Restorative Dent 2009;29:479-487.).
机译:大多数植入物支持的修复体的生物力学研究都没有考虑到植入物暴露于口腔环境后发生的生物学变化。因此,本有限元分析研究旨在比较三种类型的种植体-基台配置在建立新的生物宽度之前和之后的生物力学响应。研究的三个功能单元是:5毫米种植体平台,其外部六角形连接至5毫米直径的基台(类型1),5毫米种植体平台,其外部六角形连接至4.1毫米直径的基台。 (类型2),以及一个4.8毫米植入平台,该平台与内部六角形连接到直径为4.1毫米的基台(类型3)。 3型设计将平台切换与内部连接相结合,在骨骼建模后,应力分布的变形最小,并且应力最平滑,均匀地分布在整个接触表面上。生物宽度产生后的骨吸收改变了修复体的生物力学行为。在这项研究中,两种具有较大直径种植体平台的小直径基台的种植体基台设计,比具有相同直径种植体平台和基台的种植体,尽管它们的初始生物力学负载潜力较低,但其效果要好一些。 。 (Int J Periodontics Restorative Dent 2009; 29:479-487。)。

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