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Numerical Method for the Design of Healing Chamber in Additive-Manufactured Dental Implants

机译:增材制造牙种植体愈合腔设计的数值方法

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摘要

The inclusion of a healing chamber in dental implants has been shown to promote biological healing. In this paper, a novel numerical approach to the design of the healing chamber for additive-manufactured dental implants is proposed. This study developed an algorithm for the modeling of bone growth and employed finite element method in ANSYS to facilitate the design of healing chambers with a highly complex configuration. The model was then applied to the design of dental implants for insertion into the posterior maxillary bones. Two types of ITI® solid cylindrical screwed implant with extra rectangular-shaped healing chamber as an initial design are adopted, with which to evaluate the proposed system. This resulted in several configurations for the healing chamber, which were then evaluated based on the corresponding volume fraction of healthy surrounding bone. The best of these implants resulted in a healing chamber surrounded by around 9.2% more healthy bone than that obtained from the original design. The optimal design increased the contact area between the bone and implant by around 52.9%, which is expected to have a significant effect on osseointegration. The proposed approach is highly efficient which typically completes the optimization of each implant within 3–5 days on an ordinary personal computer. It is also sufficiently general to permit extension to various loading conditions.
机译:已经显示在牙科植入物中包括愈合室可促进生物愈合。在本文中,提出了一种新的数值方法来设计增材制造的牙科植入物的愈合室。这项研究开发了一种用于骨骼生长建模的算法,并在ANSYS中采用了有限元方法来简化具有高度复杂配置的愈合室的设计。然后将该模型应用于牙种植体的设计中,以将其插入上颌后骨。最初的设计采用两种类型的ITI®实心圆柱螺钉植入物,其带有额外的矩形愈合室,用以评估所提出的系统。这导致了愈合室的几种配置,然后根据健康的周围骨骼的相应体积分数对其进行了评估。这些植入物中最好的植入物产生的愈合腔比从原始设计中获得的骨头多出约9.2%的健康骨骼。最佳设计使骨骼与植入物之间的接触面积增加了约52.9%,这有望对骨整合产生重大影响。所提出的方法非常高效,通常可以在普通的个人计算机上3-5天内完成每个植入物的优化。它也足够通用以允许扩展到各种负载条件。

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