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新型增材制造中空多孔植入物设计。

Novel design of additive manufactured hollow porous implants.

机构信息

Department of Materials Science and Engineering, National Chiao Tung University, Hsinchu, Taiwan, ROC.

Biomedical Technology and Device Research Laboratories, Industrial Technology Research Institute, Hsinchu, Taiwan, ROC.

出版信息

Dent Mater. 2020 Nov;36(11):1437-1451. doi: 10.1016/j.dental.2020.08.011. Epub 2020 Sep 19.

Abstract

OBJECTIVE

Our aim is to examine the mechanical properties of two types of additive manufactured hollow porous dental implants and 6 and 12-week bone ingrowth after insertion in animals. A 3D numerical model is also developed to show detailed tissue differentiation and to provide design guidelines for implants.

METHODS

The two porous and a commercial dental implant were studied by series of in vitro mechanical tests (three-point bending, torsional, screwing torque, and sawbone pull-out tests). They also evaluated by in vivo animal tests (micro-CT analysis) and ex vivo pull-out tests. Moreover, the mechano-regulation algorithm was implemented by the 3D finite element model to predict the history of tissue differentiation around the implants.

RESULTS

The results showed that the two porous implants can significantly improve osseointegration after 12-week bone healing. This resulted in good fixation and stability of implants, giving very high maximum pull-out strength 413.1 N and 493.2 N, compared to 245.7 N for the commercial implant. Also, several features were accurately predicted by the mechano-regulation model, such as transversely connected bone formation, and bone resorption occurred in the middle of implants.

SIGNIFICANCE

Systematic studies on dental implants with multiple approaches, including new design, mechanical tests, animal tests, and numerical modeling, were performed. Two hollow porous implants significantly improved bone ingrowth compared with commercial implants, while maintaining mechanical strength. Also, the numerical model was verified by animal tests. It improved the efficiency of design and reduce the demand for animal sacrifice.

摘要

目的

本研究旨在研究两种类型的增材制造空心多孔牙种植体的机械性能,以及在动物体内植入后 6 周和 12 周的骨长入情况。还开发了一个 3D 数值模型来显示详细的组织分化,并为植入物提供设计指南。

方法

通过一系列体外力学试验(三点弯曲、扭转、旋入扭矩和锯骨拔出试验)对两种多孔和一种商业牙种植体进行研究。还通过体内动物试验(微 CT 分析)和体外拔出试验进行了评估。此外,通过 3D 有限元模型实现了机械调节算法,以预测植入物周围组织分化的历史。

结果

结果表明,两种多孔植入物在 12 周骨愈合后能显著改善骨整合。这导致植入物具有良好的固定和稳定性,最大拔出强度分别达到 413.1 N 和 493.2 N,而商业植入物的最大拔出强度为 245.7 N。此外,机械调节模型准确预测了几个特征,如横向连接的骨形成,以及植入物中间发生的骨吸收。

意义

对具有多种方法的牙种植体进行了系统研究,包括新设计、力学试验、动物试验和数值建模。两种空心多孔植入物与商业植入物相比,显著改善了骨长入,同时保持了机械强度。此外,动物试验验证了数值模型。它提高了设计效率,减少了对动物牺牲的需求。

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