首页> 外文期刊>Journal of Pharmacy and Bioallied Sciences >Comparative Evaluation of Implant Designs: Influence of Diameter, Length, and Taper on Stress and Strain in the Mandibular Segment—A Three-Dimensional Finite Element Analysis
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Comparative Evaluation of Implant Designs: Influence of Diameter, Length, and Taper on Stress and Strain in the Mandibular Segment—A Three-Dimensional Finite Element Analysis

机译:种植体设计的比较评估:直径,长度和锥度对下颌节段应力和应变的影响-三维有限元分析

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Introduction: Success or failure of dental implants depends on the amount of stress transferred to the surrounding bone. Increased amount of loading to the bone through implant cause failure, whereas decrease in the amount of loading to the bone causes improved success rate of implants. Biomechanical interaction between implant and bone decides the long-term function or prognosis of dental implant system. Aim and Objectives: The aims of this study were to evaluate the influence of implant length and diameter on stress distribution, to understand the stress distribution around bone–implant interface, and to understand the response of bone under axial and non-axial loading conditions. Materials and Methods: Finite element three-dimensional mandibular model was made using cone beam computed tomography of patient with completely edentulous mandible, and in that model five posterior bone segments were selected. NobelReplace Select Tapered implants with diameters and lengths 3.5 × 10 mm, 4.3 × 10 mm, 3.5 × 11.5 mm, and 4.3 × 11.5 mm, respectively were selected and three dimensionally modeled using Creo 2.0 Parametric Pro/E software. Bone and implant models were assembled as 20 models and finite element analysis was performed using ANSYS Workbench v17.0 under axial and non-axial loads. Result: Under axial and non-axial loads, 3.5 × 10 mm implant showed maximum von Mises stress and strain in both cortical and cancellous bone whereas implant with diameter and length 4.3 × 11.5 mm showed minimum von Mises stress and strain in both cortical and cancellous bone. Conclusion: In axial and non-axial loads, amount of stress distribution around implant–bone interface is influenced by diameter and length of implant in cortical and cancellous bone, respectively. Increased diameter of the implant produces the minimum stress in cortical bone. Increased length of the implant produces the minimum stress in cancellous bone.
机译:简介:牙种植体的成败取决于转移到周围骨骼的应力大小。通过植入物增加到骨骼的负载量会导致失败,而减少骨骼上的负载量会导致植入物的成功率提高。植入物与骨骼之间的生物力学相互作用决定了牙科植入物系统的长期功能或预后。目的和目的:这项研究的目的是评估植入物的长度和直径对应力分布的影响,了解骨-植入物界面周围的应力分布,以及了解骨在轴向和非轴向载荷条件下的响应。材料与方法:采用锥形束计算机断层扫描对下颌完全缺牙的患者进行三维有限元三维下颌模型,并在该模型中选择五个后骨段。使用Creo 2.0 Parametric Pro / E软件分别选择直径和长度分别为3.5×10 mm,4.3×10 mm,3.5×11.5 mm和4.3×11.5 mm的NobelReplace Select锥形植入物,并对它们进行三维建模。将骨骼和植入物模型组装为20个模型,并使用ANSYS Workbench v17.0在轴向和非轴向载荷下进行有限元分析。结果:在轴向和非轴向载荷下,3.5×10 mm植入物在皮质和松质骨中均显示出最大的von Mises应力和应变,而直径和长度为4.3×11.5 mm的植入物在皮质和松质中均显示出最小的von Mises应力和应变。骨。结论:在轴向和非轴向载荷下,植入物-骨界面周围的应力分布量分别受皮质和松质骨中植入物的直径和长度影响。植入物直径的增加会在皮质骨中产生最小的应力。植入物长度的增加在松质骨中产生的应力最小。

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