首页> 外文会议>Modelling, simulation, and identification >FINITE ELEMENT BASED PREDICTIONS OF MANDIBULAR BONE REMODELLING AROUND THREE-UNIT FIXED PARTIAL DENTURES (FPD)
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FINITE ELEMENT BASED PREDICTIONS OF MANDIBULAR BONE REMODELLING AROUND THREE-UNIT FIXED PARTIAL DENTURES (FPD)

机译:基于有限元的三单位固定局部义齿(FPD)下颌骨重塑的预测

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Bone remodelling computation algorithms have been applied to orthopaedics for more than 30 years and the first attempts applied towards dental restorations were made only in the 1990s. There is a need to further develop a quantitative basis for understanding mandibular bone remodelling. The purpose of this study is to develop a mechanical based phenomenological model capable of describing and predicting mandibular bone remodelling post-insertion of a fixed partial denture (FPD).rnThree-dimensional (3-D) finite element method (FEM) models are utilised to determine the biomechanical responses to masticatory loading in the right anterior region of the mandible. Equivalent strains and bone densities are analysed and correlated to a trilinear curve to quantify formation, resorption or equilibrium bone response. Equivalent strain and bone density results show there is considerable resorption within the distal region of bone underlying the FPD. Considerable resorption is also seen at the buccal region. A fundamental design criterion for an FPD is to institute compatibility with its surrounding living tissues. The vitality of bone about a FPD is of primary importance as the condition of bone can in turn affect the stability of the FPD considerably. The biomechanical responses observed can provide meaningful insight into restorative treatment planning, clinical procedures and fixed prosthodontics designs.
机译:骨重塑计算算法已应用于骨科已有30多年的历史,并且仅在1990年代才进行了牙齿修复的首次尝试。需要进一步发展定量基础以了解下颌骨重塑。这项研究的目的是开发一种基于机械的现象学模型,该模型能够描述和预测固定局部义齿(FPD)插入后的下颌骨重塑。rn使用三维(3-D)有限元方法(FEM)模型确定下颌右前区域对咀嚼负荷的生物力学响应。分析等效的应变和骨密度,并将其与三线性曲线相关联,以量化形成,吸收或平衡骨反应。等效应变和骨密度结果表明,FPD下方的骨远端区域内有大量吸收。在颊部区域也可见大量的吸收。 FPD的基本设计标准是建立与其周围生物组织的相容性。 FPD骨骼的生命力至关重要,因为骨骼状况反过来会大大影响FPD的稳定性。观察到的生物力学反应可以为修复治疗计划,临床程序和固定修复术设计提供有意义的见解。

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