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不同颈部几何形状和倾斜角度的下颌牙科种植体的种植体-基台复合体及种植体周围骨的应力分布的生物力学评估。

Biomechanical evaluation of stress distributions at the implant-abutment complex and peri-implant bone around mandibular dental implants with different neck geometries and inclinations.

机构信息

Private Practice, Istanbul, Turkey.

Department of Oral and Maxillofacial Surgery, School of Dentistry, Istanbul University, Istanbul, Turkey.

出版信息

Proc Inst Mech Eng H. 2021 Sep;235(9):1035-1045. doi: 10.1177/09544119211022985. Epub 2021 Jun 7.

Abstract

This study aimed to investigate the effects of the different dental implant neck designs, diameters, and inclinations, on the stress distributions at the mandibular crestal bone and implant-abutment complex, using three-dimensional (3D) finite element stress analysis (FEA) method. Finite element models of three-unit fixed partial dentures supported with two same length implants (10 mm), placed on the second premolar and second molar regions, were designed. Eight different models were designed according to the implants' neck designs (platform switching/traditional), diameters (4.1 mm/4.8 mm) and the tilting angles of the posterior implants (0°/15°). The anterior implants' widths were 4.1 mm and the neck design of the anterior implants matched the posterior implants. Two types of 100-N loads in vertical and 30° oblique directions were applied separately onto each central fossae and functional cusps of the fixed partial dentures crowns. Algor Fempro Software was used for the simulation and evaluation of the stress levels at the implant-abutment complex and the crestal bone. Stress levels measured at the crestal bone were found to be lower for the platform switching models. However, the platform switching design generated higher stress magnitudes within the implant-abutment complex. Inclined placement of posterior implants increased the amount of stress at the crestal bone around both implants. Biomechanically, selection of the largest diameter possible when using tilted platform switched implants may be recommended at the posterior mandible.

摘要

本研究旨在通过三维有限元应力分析(FEA)方法,探讨不同牙种植体颈部设计、直径和倾斜角度对下颌牙槽嵴骨和种植体-基台复合体的应力分布的影响。设计了三种由两颗相同长度的种植体(10mm)支撑的三单位固定局部义齿的有限元模型,种植体分别放置在第二前磨牙和第二磨牙区域。根据种植体颈部设计(平台转换/传统)、直径(4.1mm/4.8mm)和后牙种植体倾斜角度(0°/15°),设计了 8 种不同的模型。前牙种植体的宽度为 4.1mm,前牙种植体的颈部设计与后牙种植体相匹配。分别在每个固定局部义齿冠的中央窝和功能尖上施加两种类型的 100-N 垂直和 30°斜向载荷。Algor Fempro 软件用于模拟和评估种植体-基台复合体和牙槽骨的应力水平。结果发现,平台转换模型的牙槽骨处的应力水平较低。然而,平台转换设计在种植体-基台复合体内部产生了更高的应力值。后牙种植体倾斜放置增加了两个种植体周围牙槽骨的应力。从生物力学角度来看,在后下颌骨使用倾斜平台转换种植体时,建议选择尽可能大的直径。

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