首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Prediction of insertion torque and stiffness of a dental implant in bovine trabecular bone using explicit micro-finite element analysis
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Prediction of insertion torque and stiffness of a dental implant in bovine trabecular bone using explicit micro-finite element analysis

机译:用明确的微型有限元分析预测牛小梁骨中牙齿植入物的插入扭矩和刚度

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The assessment of dental implant performance is dominated by the concept of mechanical stability. Primary stability is defined as the capacity of a bone-implant structure to bear loads without occurrence of excessive damage and loosening. In order to achieve the highest primary stability, dental implants are inserted into bone using a press-fit procedure. Pre- and postoperative evaluation of primary stability using implantation torque and resonance frequency analysis are valid approaches but do not allow the systematic comparison of different protocols in similar situations. The aim of this research is to develop and validate an explicit, micro-finite element (mu FE) methodology to study the effect of different amounts of initial press-fit on implantation torque and initial stiffness of a dental implant. Ten bovine trabecular bone samples were prepared that cover a wide range of bone volume fraction. A dental implant was inserted using two implantation protocols named soft (small initial drilled hole) and dense (increased initial drilled hole). The implantation torque was measured and the stiffness was calculated using an infinitesimal off-axis loading. Finite element simulations of the implant insertion and subsequent loading were performed on micro-computed tomography (mu CT) reconstructions of the samples using an explicit solver. Bone was defined as an elasto-plastic material with von Mises yield criteria and hardening. Element deletion was triggered by a threshold in cumulated plastic strains. A sensitivity analysis was performed on friction, hardening and fracture strain to provide a better insight into the effects of these parameters on the results. The implantation torque required for the soft protocol was higher compared to the dense approach in both experiment and simulation due to the higher amount of bone compaction in the first approach. Interestingly, stiffness did not show a significant dependency on the drilling protocol in both experiment and simulation. In conclusion, the explicit microFE methodology developed in this study was able to capture the outcome of two drilling protocols in terms of torque and stiffness and represents a powerful tool to explore the effect of different parameters on primary stability of dental implants.
机译:牙科植入物性能的评估是由机械稳定性的概念主导。主要稳定性被定义为骨植入结构承受载荷的容量而不会发生过度损坏和松动。为了达到最高初级稳定性,牙科植入物使用压配合程序插入骨中。使用注入扭矩和共振频率分析对初级稳定性的初级稳定性的预先和术后评估是有效的方法,但不允许在类似情况下系统的不同协议进行系统比较。该研究的目的是开发和验证明确的微型有限元(MU FE)方法,以研究不同量的初始压配对牙种植体的植入扭矩和初始刚度的影响。制备十牛小梁骨样品,其覆盖各种骨体积分数。使用名为Soft(小型初钻孔)和致密的两个植入方案插入牙科植入物。测量植入扭矩并使用无限轴外载荷计算刚度。使用明确求解器对样品的微计算机断层扫描(MU CT)重建进行植入物插入和随后加载的有限元模拟。骨被定义为具有von MIS的弹性塑料材料,收益率标准和硬化。元素删除被累积塑性菌株的阈值触发。对摩擦,硬化和断裂应变进行灵敏度分析,以更好地了解这些参数对结果的影响。与第一种方法中的骨压缩量较高的实验和模拟中,软方案所需的植入扭矩更高。有趣的是,在实验和仿真中,刚度并未显示对钻井协议的显着依赖性。总之,本研究中开发的显式微泡方法能够在扭矩和刚度方面捕获两种钻井协议的结果,并代表了一种强大的工具,探讨了不同参数对牙科植入物初级稳定性的影响。

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