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基于拉丁超立方有限元法的牙种植体共振频率分析的克里金代理模型

Kriging Surrogate Model for Resonance Frequency Analysis of Dental Implants by a Latin Hypercube-Based Finite Element Method.

作者信息

Chu Liu, Shi Jiajia, Souza de Cursi Eduardo

机构信息

Department of Transportation, Nantong University, Nantong, China.

Département Mécanique, Institut National des Sciences Appliquées de Rouen, Rouen, France.

出版信息

Appl Bionics Biomech. 2019 Apr 10;2019:3768695. doi: 10.1155/2019/3768695. eCollection 2019.

Abstract

The dental implantation in clinical operations often encounters difficulties and challenges of failure in osseointegration, bone formulation, and remodeling. The resonance frequency (RF) can effectively describe the stability of the implant in physical experiments or numerical simulations. However, the exact relationship between the design variables of dental implants and RF of the system is correlated, complicated, and dependent. In this study, an appropriate mathematical model is proposed to evaluate and predict the implant stability and performance. The model has merits not only in the prediction reliability and accuracy but also in the compatibility and flexibility, in both experimental data and numerical simulation results. The Kriging surrogate model is proposed to present the numerical relationship between RF and material parameters of dental implants. The Latin Hypercube (LH) sampling method as a competent and sophisticated method is applied and combined with the finite element method (FEM). The methods developed in this paper provide helpful guidance for designers and researchers in the implantation design and surgical plans.

摘要

临床手术中的牙种植常常会遇到骨整合、骨形成和重塑失败等困难与挑战。共振频率(RF)在物理实验或数值模拟中能够有效地描述种植体的稳定性。然而,牙种植体的设计变量与系统共振频率之间的确切关系相互关联、复杂且具有依赖性。在本研究中,提出了一个合适的数学模型来评估和预测种植体的稳定性及性能。该模型不仅在预测可靠性和准确性方面具有优点,而且在实验数据和数值模拟结果的兼容性与灵活性方面也具有优势。提出了克里金代理模型来呈现共振频率与牙种植体材料参数之间的数值关系。拉丁超立方(LH)抽样方法作为一种成熟且精密的方法被应用,并与有限元方法(FEM)相结合。本文所开发的方法为种植设计和手术方案的设计者及研究者提供了有益的指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edfa/6481145/d4c55c60616e/ABB2019-3768695.001.jpg

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