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3D finite element analysis of immediate loading of single wide versus double implants for replacing mandibular molar

机译:单颗宽或双颗种植体即时负荷替代下颌磨牙的3D有限元分析

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Purpose:The purpose of this finite element study was to compare the stresses, strains, and displacements of double versus single implant in immediate loading for replacing mandibular molar.Materials and Methods:Two 3D FEM (finite element method) models were made to simulate implant designs. The first model used 5-mm-wide diameter implant to support a single molar crown. The second model used 3.75-3.75 double implant design. Anisotropic properties were assigned to bone model. Each model was analyzed with single force magnitude (100 N) in vertical axis.Results:This FEM study suggested that micromotion can be controlled better for double implants compared to single wide-diameter implants. The Von Mises stress for double implant showed 74.44% stress reduction compared to that of 5-mm implant. The Von Mises elastic strain was reduced by 61% for double implant compared to 5-mm implant.Conclusion:Within the limitations of the study, when the mesiodistal space for artificial tooth is more than 12.5 mm, under immediate loading, the double implant support should be considered.
机译:目的:本有限元研究的目的是比较在即时负荷下双下颌种植体与单种植体置换下颌磨牙的应力,应变和位移。材料与方法:制作了两个3D FEM(有限元方法)模型来模拟种植体设计。第一个模型使用5毫米宽的直径植入物来支撑单个磨牙冠。第二种模型采用3.75-3.75双重植入设计。将各向异性属性分配给骨骼模型。每个模型在垂直轴上的单力大小(100 N)进行了分析。结果:这项有限元研究表明,与单宽直径植入物相比,双植入物可以更好地控制微运动。与5毫米植入物相比,双植入物的冯·米塞斯应力显示出74.44%的应力降低。与5毫米种植体相比,双种植体的Von Mises弹性应变降低了61%。结论:在研究的局限性内,当人造牙的近中隔空间大于12.5毫米时,在即时载荷下,双种植体支撑应该被考虑到。

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