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有限元法:一种研究正畸牙齿移动的工具。

The finite element method: a tool to study orthodontic tooth movement.

作者信息

Cattaneo P M, Dalstra M, Melsen B

机构信息

Dept. of Orthodontics, Royal Dental College, University of Aarhus, Vennelyst Boulevard 9, DK-8000, Aarhus C, Denmark.

出版信息

J Dent Res. 2005 May;84(5):428-33. doi: 10.1177/154405910508400506.

Abstract

Orthodontic tooth movement is achieved by (re)modeling processes of the alveolar bone, which are triggered by changes in the stress/strain distribution in the periodontium. In the past, the finite element (FE) method has been used to describe the stressed situation within the periodontal ligament (PDL) and surrounding alveolar bone. The present study sought to determine the impact of the modeling process on the outcome from FE analyses and to relate these findings to the current theories on orthodontic tooth movement. In a series of FE analyses simulating teeth subjected to orthodontic loading, the influence of geometry/morphology, material properties, and boundary conditions was evaluated. The accurate description of alveolar bone morphology and the assignment of non-linear mechanical properties for the PDF elements demonstrate that loading of the periodontium cannot be explained in simple terms of compression and tension along the loading direction. Tension in the alveolar bone was far more predominant than compression.

摘要

正畸牙齿移动是通过牙槽骨的(重新)塑形过程实现的,这些过程由牙周膜中应力/应变分布的变化触发。过去,有限元(FE)方法已被用于描述牙周韧带(PDL)和周围牙槽骨内的应力情况。本研究旨在确定建模过程对FE分析结果的影响,并将这些发现与当前关于正畸牙齿移动的理论联系起来。在一系列模拟正畸加载牙齿的FE分析中,评估了几何形状/形态、材料特性和边界条件的影响。对牙槽骨形态的准确描述以及为PDF单元指定非线性力学性能表明,牙周膜的加载不能简单地用沿加载方向的压缩和拉伸来解释。牙槽骨中的张力远比压缩更为显著。

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