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Periodontal ligament influence on the stress distribution in a removable partial denture supported by implant: a finite element analysis

机译:牙周韧带对种植体支撑的可摘局部义齿应力分布的影响:有限元分析

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OBJECTIVES: The non-homogenous aspect of periodontal ligament (PDL) has been examined using finite element analysis (FEA) to better simulate PDL behavior. The aim of this study was to assess, by 2-D FEA, the influence of non-homogenous PDL on the stress distribution when the free-end saddle removable partial denture (RPD) is partially supported by an osseointegrated implant. MATERIAL AND METHODS: Six finite element (FE) models of a partially edentulous mandible were created to represent two types of PDL (non-homogenous and homogenous) and two types of RPD (conventional RPD, supported by tooth and fibromucosa; and modified RPD, supported by tooth and implant [10.00x3.75 mm]). Two additional Fe models without RPD were used as control models. The non-homogenous PDL was modeled using beam elements to simulate the crest, horizontal, oblique and apical fibers. The load (50 N) was applied in each cusp simultaneously. Regarding boundary conditions the border of alveolar ridge was fixed along the x axis. The FE software (Ansys 10.0) was used to compute the stress fields, and the von Mises stress criterion (svM) was applied to analyze the results. RESULTS: The peak of svM in non-homogenous PDL was higher than that for the homogenous condition. The benefits of implants were enhanced for the non-homogenous PDL condition, with drastic svM reduction on the posterior half of the alveolar ridge. The implant did not reduce the stress on the support tooth for both PDL conditions. Conclusion: The PDL modeled in the non-homogeneous form increased the benefits of the osseointegrated implant in comparison with the homogeneous condition. Using the non-homogenous PDL, the presence of osseointegrated implant did not reduce the stress on the supporting tooth.
机译:目的:已经使用有限元分析(FEA)检查了牙周膜(PDL)的非均质性,以更好地模拟PDL的行为。这项研究的目的是通过二维有限元分析评估当骨整合植入物部分支撑自由端鞍状可摘局部义齿(RPD)时非均质PDL对应力分布的影响。材料与方法:创建了六个无牙颌的有限元(FE)模型,以表示两种类型的PDL(非均质和均质)和两种RPD(常规RPD,由牙齿和纤维粘连支撑);以及改良的RPD,由牙齿和植入物支撑[10.00x3.75 mm]。另外两个没有RPD的Fe模型用作控制模型。使用梁单元对非均质的PDL进行建模,以模拟波峰,水平,倾斜和顶端纤维。负荷(50 N)同时施加在每个尖端上。关于边界条件,牙槽axis的边界沿x轴固定。使用FE软件(Ansys 10.0)计算应力场,并使用von Mises应力准则(svM)分析结果。结果:非均质PDL中svM的峰值高于均质情况。对于非均质的PDL情况,植入物的益处得到了增强,同时牙槽后半部的svM大大降低。在两种PDL条件下,植入物均不能降低支撑齿上的应力。结论:与均质条件相比,以非均质形式建模的PDL增加了骨整合植入物的益处。使用非均质的PDL,骨整合植入物的存在并不能减少对支持牙齿的压力。

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