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多因素分析影响上颌种植体骨丢失的变量:使用有限元分析和 SED 骨重塑算法进行预测。

Multi-factorial analysis of variables influencing the bone loss of an implant placed in the maxilla: prediction using FEA and SED bone remodeling algorithm.

机构信息

Department of Mechanical Engineering, Chang Gung University, 259 Wen-Hua 1st Road, Kwei-Shan, Tao-Yuan 333, Taiwan.

出版信息

J Biomech. 2010 Mar 3;43(4):644-51. doi: 10.1016/j.jbiomech.2009.10.030. Epub 2009 Nov 25.

Abstract

The aim of this study was to investigate the interactions of implant position, implant-abutment connection and loading condition influencing bone loss of an implant placed in the maxilla using finite element (FE) analysis and mathematical bone remodeling theory. The maxilla section contours were acquired using CT images to construct FE models containing RS (internal retaining-screw) and the TIS (taper integrated screwed-in) implants placed in SC (along the axis of occlusal force) and RA (along the axis of residual ridge) positions. The adaptive strain energy density (SED) algorithm was combined with FE approach to study the preliminary bone remodeling around implant systems under different load conditions. The simulated results showed that the implant position obviously influenced the bone loss. An implant placed in the RA position resulted in substantially increased bone loss. Implant receiving a lateral load slightly increased bone loss compared with an axial load. The implant type did not significantly influence bone loss. It was found that buccal site suffered the most bone loss around the implant, followed by distal, lingual and mesial sites. The implant position primarily influenced bone loss and it was found most obviously at the buccal site. Implant placed along the axial load direction of a proposed prosthesis could obtain less bone loss around the implant. Attaining proper occlusal adjustments to reduce the lateral occlusal force is recommended in implant-bone-prosthesis system. Abutments of internal engagement with or without taper-fit did not affect the bone loss in the surrounding bone.

摘要

本研究旨在通过有限元(FE)分析和数学骨重塑理论,研究种植体位置、种植体-基台连接和加载条件对上颌种植体骨丢失的相互作用。使用 CT 图像获取上颌截面轮廓,构建包含 RS(内部固位螺钉)和 TIS(锥形整体旋入式)种植体的 FE 模型,种植体分别置于 SC(沿咬合力轴线)和 RA(沿剩余牙槽嵴轴线)位置。自适应应变能密度(SED)算法与 FE 方法相结合,研究不同加载条件下种植体系统周围初步骨重塑。模拟结果表明,种植体位置明显影响骨丢失。RA 位置的种植体导致骨丢失显著增加。与轴向载荷相比,侧向载荷下的种植体略微增加了骨丢失。种植体类型对骨丢失没有显著影响。结果发现,种植体周围颊侧部位骨丢失最多,其次是远中、舌侧和近中部位。种植体位置主要影响骨丢失,在颊侧部位最为明显。沿着拟议修复体的轴向载荷方向放置种植体,可以减少种植体周围的骨丢失。建议在种植体-骨-修复体系统中进行适当的咬合调整,以减少侧向咬合力。具有或不具有锥形配合的内部啮合的基台不会影响周围骨的骨丢失。

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