首页> 外文会议>ASME international mechanical engineering congress and exposition >EFFECTS OF LINGUALIZED AND LINEAR OCCLUSION SCHEMES ON THE STRESS DISTRIBUTION OF AN IMPLANT RETAINED OVERDENTURE USING FINITE ELEMENT ANALYSIS
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EFFECTS OF LINGUALIZED AND LINEAR OCCLUSION SCHEMES ON THE STRESS DISTRIBUTION OF AN IMPLANT RETAINED OVERDENTURE USING FINITE ELEMENT ANALYSIS

机译:语言化和线性咬合方案对有限元分析的植骨保留覆盖义齿应力分布的影响

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This study compares the effects of lingualized and linear occlusion schemes on the stress distribution of an implant retained mandibular overdenture (IRO) using finite element analysis (FEA). A high fidelity solid model of mandibular overdenture incorporating cusps and fossae of occlusal surface with two anterior implants in the canine regions and residual ridge support in the posterior region of the alveolar bone was modeled in SolidWorks and imported to ANSYS for stress analysis. The load was applied vertically to the central grooves and buccal cusp tips of the premolars and molar teeth for the lingualized and linear occlusion respectively. The loading magnitudes were 200 N on the premolars and 200 N on the molar teeth with multiple contact locations. The results show that the linear occlusion scheme generated higher stress in the implants and the prosthetic bar than the lingualized occlusion. The locations of high stress concentrations were the neck of the implants and the implant-prosthetic bar intersection for both the occlusion schemes. However, in the cortical bone lingualized occlusion loading scheme generated higher stress (max principal stress) than the linear one suggesting possibility of greater bone loss. The results of this study could be used to comprehend the stress distribution in the denture teeth, base, bone-implant interface and surrounding bone for the two occlusion concepts and may be of help to the clinicians in choosing the right scheme for the edentulous patients.
机译:这项研究使用有限元分析(FEA)比较了舌状和线性咬合方案对种植体保留的下颌覆盖义齿(IRO)应力分布的影响。在SolidWorks中对下颌覆盖义齿的高保真实体模型进行了建模,该模型在犬齿区域结合了两个咬合面的尖牙和窝,在犬牙区域具有两个前植入物,在牙槽骨的后部区域具有残余的脊骨支撑,并导入到ANSYS中进行应力分析。将负荷垂直施加到舌侧和线性咬合的前磨牙和磨牙的中央凹槽和颊尖尖上。在多个接触部位,前磨牙的负荷量为200 N,而磨牙的负荷量为200N。结果表明,与牙合牙合相比,线性牙合方案在植入物和假牙中产生了更高的应力。对于两种闭塞方案,高应力集中的位置都是植入物的颈部和植入物-假体棒的交叉点。然而,在皮质骨舌侧闭塞负荷方案中产生的应力(最大主应力)比线性骨应力高,这表明可能发生更大的骨质流失。这项研究的结果可用于了解两种咬合概念在义齿,基托,植骨界面和周围骨骼中的应力分布,并且可能有助于临床医生为无牙颌患者选择正确的方案。

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