计算机模拟复杂植入物安装后颧骨的应力-应变状态

T.M. Dibirov, Aleksey Drobyshev, Edvard A. Kharazyan, N. Redko, Egor Pankov, Alexander A Kozulin, Sergey V. Panin, S. Arutyunov
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引用次数: 0

摘要

该研究通过改变颧骨植入物的类型和数量以及施加载荷,对 "颧骨-植入物-义齿基托 "系统的应力-应变状态(SSS)进行评估。载荷大小在很大范围内变化,这是咀嚼过程的特征。改变 "颧骨种植体-骨组织 "界面的粘附条件会改变最大应力水平和临界应力集中点的位置。颅骨局部骨组织完整性的破坏是 "颧骨种植体-义齿基托 "系统应力重新分布的主要原因之一。在选择颧骨种植体安装的标准尺寸时,应主要考虑这种现象,以降低颅骨(作为承重结构的基础)薄弱区域的顺应性。根据基于有限元的计算机模拟结果,提出了规划修复治疗的算法,其中包括根据 SSS 计算结果和临界状态(主要是与颧骨种植体接触区域的骨组织)的出现,选择安装颧骨种植体的大小和位置的迭代方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computer simulation of stress-strain states in zygomatic bones after complex installation of implants
The research addresses evaluation of stress-strain state (SSS) in the “zygomatic bones–implants–denture base” system by varying the type and number of the zygomatic implants, as well as applying loads. The load magnitude was varied over a wide range, characteristic of the mastication process. Changing the adhesion conditions at the “zygomatic implant–bone tissue” interface varied both the level of maximum stress and the location of the critical stress concentrator. The local violation of the integrity of bone tissue in the skull was one of the key reasons for the redistribution of stresses in the “zigomatic implant­denture base” system. Such a phenomenon should be primarily taken into account when choosing the standard sizes of installed zygomatic implants in order to reduce the compliance of weakened areas of the skull (as the basis of the load-bearing structure). Based on the results of the FEM-based computer simulation, the algorithm was proposed for planning prosthetic treatment, which involves the iterative method for selecting both size and location of installing zygomatic implants depending on the results of the SSS calculation and the onset of a critical condition (primarily in bone tissue at the contact area with zygomatic implants).
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