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Structural optimization of dental restorations using the principle of adaptive growth

机译:利用自适应生长原理优化牙齿修复体的结构

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Objectives. In a restored tooth, the stresses that occur at the tooth-restoration interface during loading could become large enough to fracture the tooth and/or restoration and it has been estimated that 92% of fractured teeth have been previously restored. The tooth preparation process for a dental restoration is a classical optimization problem: tooth reduction must be minimized to preserve tooth tissue whilst stress levels must be kept low to avoid fracture of the restored unit. The objective of the present study was to derive alternative optimized designs for a second upper premolar cavity preparation by means of structural shape optimization based on the finite element method and biological adaptive growth. Methods. Three models of cavity preparations were investigated: an inlay design for preparation of a premolar tooth, an undercut cavity design and an onlay preparation. Three restorative materials and several tooth/restoration contact conditions were utilized to replicate the in vitro situation as closely as possible. The optimization process was run for each cavity geometry. Results. Mathematical shape optimization based on biological adaptive growth process was successfully applied to tooth preparations for dental restorations. Significant reduction in stress levels at the tooth-restoration interface where bonding is imperfect was achieved using optimized cavity or restoration shapes. In the best case, the maximum stress value was reduced by more than 50%. Significance. Shape optimization techniques can provide an efficient and effective means of reducing the stresses in restored teeth and hence has the potential of prolonging their service lives. The technique can easily be adopted for optimizing other dental restorations.
机译:目标。在修复的牙齿中,加载期间在牙齿-修复界面处出现的应力可能会变得足够大,以致使牙齿断裂和/或修复,并且据估计,先前已修复了92%的断裂牙齿。牙齿修复的牙齿准备过程是一个经典的优化问题:必须最大程度地减少牙齿的减少以保护牙齿组织,同时必须将应力水平保持在较低水平,以避免修复单元破裂。本研究的目的是通过基于有限元方法和生物适应性生长的结构形状优化,来推导第二上磨牙前腔准备的替代性优化设计。方法。研究了三种腔体制备模型:用于制备前磨牙的嵌体设计,底切腔体设计和嵌体制备。三种修复材料和几种牙齿/修复接触条件被用来尽可能地复制体外情况。针对每个腔体几何体运行优化过程。结果。基于生物适应性生长过程的数学形状优化已成功地应用于牙修复体的牙齿准备中。通过优化型腔或修复体的形状,可以显着降低粘接不完全的牙齿-修复界面的应力水平。在最佳情况下,最大应力值降低了50%以上。意义。形状优化技术可以提供一种有效且有效的方法来减少修复后的牙齿中的应力,因此有可能延长其使用寿命。该技术可以轻松地用于优化其他牙齿修复。

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