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由于咬合接触导致的牙齿移位:一项三维有限元研究。

Tooth displacement due to occlusal contacts: a three-dimensional finite element study.

作者信息

Gomes de Oliveira S, Seraidarian P I, Landre J, Oliveira D D, Cavalcanti B N

机构信息

Department of Prosthodontics, Pontifical Catholic University, Belo Horizonte, MG, Brazil.

出版信息

J Oral Rehabil. 2006 Dec;33(12):874-80. doi: 10.1111/j.1365-2842.2006.01670.x.

Abstract

The use of the Finite Element Method (FE) is an appropriate way to study occlusal forces and tooth movement. The purpose of this study was to evaluate the effects of different occlusal contact patterns on tooth displacement in an adult dentition using a three-dimensional FE model of a human maxilla and mandible. Initially, images of a computerized tomography scan were redrawn in a computer program (CATIA) followed by the FE mesh construction. The MSC/Patran software was used to develop the FE mesh comprising 520,445 elements and 106,633 nodes. The MSC/Nastran program was utilized as pre and post-processor for all mathematical calculations necessary to evaluate dental and mandibular biomechanics. Four occlusal patterns were tested: FEM 1 - standard occlusal contacts; FEM 2 - removal of mesial marginal and mesial tripoidism contacts; FEM 3 - removal of distal marginal and distal tripoidism contacts; FEM 4 - similar to FEM 3 with added contacts between upper and lower incisors. Small changes in the standard distribution of occlusal contacts resulted in an imbalance of occlusal forces and changes in dental positioning. All simulations tested showed mesial displacement of posterior teeth. The most significant changes were registered in the model presenting unstable occlusal contacts when the anterior teeth were in occlusion (FEM 4). These findings may explain mandibular incisors crowding and maxillary incisors flaring as a result of small variations in dental contacts.

摘要

使用有限元法(FE)是研究咬合力和牙齿移动的一种合适方法。本研究的目的是使用人类上颌骨和下颌骨的三维有限元模型,评估不同咬合接触模式对成人牙列中牙齿位移的影响。最初,在计算机程序(CATIA)中重新绘制计算机断层扫描图像,然后构建有限元网格。使用MSC/Patran软件开发包含520,445个单元和106,633个节点的有限元网格。MSC/Nastran程序用作评估牙齿和下颌生物力学所需的所有数学计算的前处理器和后处理器。测试了四种咬合模式:有限元模型1 - 标准咬合接触;有限元模型2 - 去除近中边缘和近中三角嵴接触;有限元模型3 - 去除远中边缘和远中三角嵴接触;有限元模型4 - 与有限元模型3类似,但上下切牙之间增加了接触。咬合接触标准分布的微小变化导致咬合力失衡和牙齿位置改变。所有测试模拟均显示后牙近中位移。当上前牙咬合时,在呈现不稳定咬合接触的模型中记录到最显著的变化(有限元模型4)。这些发现可能解释了由于牙齿接触的微小变化导致下颌切牙拥挤和上颌切牙外展。

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