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上颌骨的 All-on-4 概念——涉及高性能聚合物的生物力学分析。

The all-on-4 concept in the maxilla-A biomechanical analysis involving high performance polymers.

机构信息

Oral Technology, Rheinische Friedrich-Wilhelms University, University Hospital Bonn, Bonn, Germany.

Department of Prosthetic Dentistry, Preclinical Education and Materials Science, Rheinische Friedrich-Wilhelms University, University Hospital Bonn, Bonn, Germany.

出版信息

J Biomed Mater Res B Appl Biomater. 2021 Nov;109(11):1698-1705. doi: 10.1002/jbm.b.34826. Epub 2021 Mar 3.

Abstract

A finite element analysis was used to determine the loading behavior of a full "All-on-4" bridge in the maxilla made from different framework materials. The model was generated based on data from an edentulous maxilla. Four implants were positioned according to the All-on-4 concept and a full arch restoration was created on top of the implants. Separate thrust dies were modeled directly above each of the units of the bridge. Forces of 500 N were applied to each thrust die separately. Simulations were repeated with the following variations and results were compared to determine the influence of each variation: point of force application (from tooth 16 to 26), framework material (high performance polymer HPP, titanium Ti, cobalt chromium CoCr), and healing state of the bone/implant interface. Depending on the point of force application, the bone below the HPP framework showed increased stresses (median: 180 MPa at 13) compared to the CoCr and Ti frameworks (110 MPa at 16) under immediate loading. After osseointegration, the framework material had no obvious influence on the stresses in the bone. In the osseointegrated state, maximum stresses are decreased by the tenfold. Stresses in the framework were clearly decreased with HPP compared to CoCr and Ti (75, 125, 115 MPa). Loading the anterior teeth induced higher stresses than loading the molar region due to torsional deformation. This effect increased with decreasing framework material stiffness. The framework stiffness had less distinct influence on the stresses in the restoration than the point of force application.

摘要

采用有限元分析方法,研究了不同框架材料制作的全口“All-on-4”上颌桥的受力行为。模型是基于无牙颌上颌的数据生成的。根据 All-on-4 概念,将四个种植体定位,并在种植体顶部制作全弓修复体。在每个桥体单元的正上方直接模拟了单独的推力模。分别向每个推力模施加 500N 的力。进行了以下变化的模拟,并比较了结果,以确定每种变化的影响:力的作用点(从 16 号牙到 26 号牙)、框架材料(高性能聚合物 HPP、钛 Ti、钴铬 CoCr)和骨/种植体界面的愈合状态。根据力的作用点的不同,在即刻加载下,HPP 框架下方的骨显示出比 CoCr 和 Ti 框架更高的应力(中位数:13 处为 180MPa)(16 处为 110MPa)。在骨整合后,框架材料对骨中的应力没有明显影响。在骨整合状态下,最大应力降低了十倍。与 CoCr 和 Ti 相比,HPP 明显降低了框架中的应力(75、125、115MPa)。由于扭转变形,前牙加载比磨牙区加载会引起更高的应力。这种效应随着框架材料刚度的降低而增加。与力的作用点相比,框架刚度对修复体中的应力的影响不那么明显。

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