Aydin A K, Tekkaya A E
Department of Prosthodontics, University of Ankara, Faculty of Dentistry, Turkey.
J Prosthet Dent. 1992 Dec;68(6):879-84. doi: 10.1016/0022-3913(92)90543-j.
Stresses and deflections of abutments induced by various loadings were analyzed with a two-dimensional finite element model. The biomechanic system consisted of the mandibular posterior three-unit fixed partial denture (FPD). Four different loading types were analyzed: (1) a distributed force of 600 N; (2) concentrated nonaxial and (3) axial 300 N forces at the marginal ridge of the molar; and (4) a concentrated vertical 300 N force at the center of the pontic. All computations were conducted for three different alveolar bone levels. The premolar exerted a greater pressure during occlusal loadings (except axially) on the alveolar bone than the molar. According to the stresses induced in the alveolar bone, the most critical loading was the distributed force. With diminishing periodontal support, stresses elevated in the biomechanic system and critical increases were noted for the concentrated nonaxial load on the molar.
使用二维有限元模型分析了各种载荷引起的基牙应力和位移。生物力学系统由下颌后牙区三单位固定局部义齿(FPD)组成。分析了四种不同的加载类型:(1)600 N的分布力;(2)集中的非轴向力和(3)300 N的轴向力作用于磨牙的边缘嵴;以及(4)300 N的集中垂直力作用于桥体中心。所有计算均针对三种不同的牙槽骨水平进行。在前磨牙在咬合加载期间(轴向加载除外)对牙槽骨施加的压力比磨牙更大。根据牙槽骨中产生的应力,最关键的加载是分布力。随着牙周支持的减少,生物力学系统中的应力升高,并且磨牙上的集中非轴向载荷出现了临界增加。