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倾斜外六角种植体支抗对上颌后牙区 3 单位种植体支持式修复体影响的三维有限元分析

Effect of Splinting of Tilted External Hexagon Implants on 3-Unit Implant-Supported Prostheses in the Posterior Maxilla: A 3D Finite Element Analysis.

机构信息

Alfenas Dental School, Federal University of Alfenas, Minas Gerais, Brazil.

Department of Dental Materials and Prosthodontics, Araçatuba Dental School, UNESP - Univ Estadual Paulista, Araçatuba, Sao Paulo, Brazil.

出版信息

J Prosthodont. 2022 Oct;31(8):697-704. doi: 10.1111/jopr.13460. Epub 2022 Jan 3.

DOI:10.1111/jopr.13460
PMID:34859540
Abstract

PURPOSE

To assess the effects of tilted external hexagon implants and splinted restorations in terms of stress distribution on the bone tissue, implants, and prosthetic screws, using three-dimensional finite element analysis.

MATERIALS AND METHODS

Six models were used to simulate a posterior maxilla bone block (type IV) from the first premolar to the first molar. Each model included three 4.1-mm-diameter external hexagon implants with varying inclinations (0°, 17°, and 30°) and crown designs (splinted and nonsplinted restorations). The forces applied were as follows: 400 N axially (50 N for each slope of the cusp) and 200 N obliquely (45° only on the buccal slope of the cusp). Stress distribution on the implants and prosthetic screw was evaluated using Von Mises stress, while the maximum principal stress was used to evaluate the stress distribution in the bone tissue.

RESULTS

The oblique load increased the stress on all the structures in all the models. Increased inclination of the implants resulted in higher stress concentration in the bone tissue, implants, and prosthetic screws. However, splinted restorations contributed to reduction of the stress for the oblique loading, mainly in the bone tissue and prosthetic screw of the first molar, as the stress was shared between the first and second premolar restorations.

CONCLUSIONS

Tilted implants increased proportionally the stress on bone tissue and prosthetic screws of models. Additionally, splinting restorations reduced the stress concentration area in the simulated bone tissue, implants, and prosthetic screws in the first molar, as the stress was shared with the adjacent implants.

摘要

目的

通过三维有限元分析评估倾斜外六角种植体和夹板修复体在骨组织、种植体和修复体螺钉上的应力分布的影响。

材料与方法

使用六个模型模拟从第一前磨牙到第一磨牙的后上颌骨块(IV 型)。每个模型均包括三个直径为 4.1 毫米的外六角种植体,具有不同的倾斜角度(0°、17°和 30°)和冠设计(夹板和非夹板修复体)。施加的力如下:轴向 400 N(每个牙尖斜面 50 N)和斜向 200 N(仅在牙尖颊斜面 45°)。使用 Von Mises 应力评估种植体和修复体螺钉上的应力分布,而最大主应力用于评估骨组织中的应力分布。

结果

斜向载荷增加了所有模型中所有结构的应力。种植体倾斜角度的增加导致骨组织、种植体和修复体螺钉中的应力集中增加。然而,夹板修复体有助于减少斜向载荷的应力,主要是在第一磨牙的骨组织和修复体螺钉中,因为应力在第一和第二前磨牙修复体之间分担。

结论

倾斜种植体成比例地增加了模型中骨组织和修复体螺钉的应力。此外,夹板修复体减少了模拟骨组织、种植体和修复体螺钉中第一磨牙的应力集中区域,因为应力与相邻种植体分担。

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