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一种用于模拟机械刺激下骨重塑过程的数学模型。

A mathematical model for simulating the bone remodeling process under mechanical stimulus.

作者信息

Li Jianying, Li Haiyan, Shi Li, Fok Alex S L, Ucer Cemal, Devlin Hugh, Horner Keith, Silikas Nick

机构信息

School of Mechanical, Aerospace and Civil Engineering, University of Manchester, UK.

出版信息

Dent Mater. 2007 Sep;23(9):1073-8. doi: 10.1016/j.dental.2006.10.004. Epub 2006 Nov 29.

Abstract

OBJECTIVES

Among the current mathematical models for bone remodeling, few can consider bone resorption due to overload. The objective of this paper is to develop a new bone remodeling model which can simulate both underload and overload resorptions that often occur in dental implant treatments.

METHODS

Based on the traditional model, a new mathematical equation relating the density change rate with mechanical stimulus has been developed. The new equation contains an additional quadratic term which can produce reduction in bone density at high load levels. In addition, to fully exploit the characteristics of this model, a range of different bone remodeling behaviors were studied under the load cases with both constant and varying stress magnitudes. Finally, the model was applied in conjunction with the finite element method to a practical case of dental implant treatment.

RESULTS

The FE analysis results showed that bone resorption at the neck of the implant occurred due to occlusal overload but then resorption stopped after some time before reaching the coarse threads. Meanwhile, the density of the bone deeper into the mandible increased slightly due to the additional mechanical stimulus provided by the occlusal load. This phenomenon is observable in some clinical situations.

SIGNIFICANCE

The new model can describe the bone overload resorption, a feature which is absent in most of the current models. And by simulating the dental implant treatment using FE method, the ability of the new mathematical model to simulate overload bone resorption has been clearly demonstrated.

摘要

目的

在当前用于骨重塑的数学模型中,很少有模型能够考虑因过载导致的骨吸收。本文的目的是开发一种新的骨重塑模型,该模型能够模拟牙种植治疗中经常出现的欠载和过载吸收情况。

方法

基于传统模型,开发了一个将密度变化率与机械刺激相关联的新数学方程。新方程包含一个额外的二次项,该项在高负荷水平下会导致骨密度降低。此外,为了充分利用该模型的特性,研究了在应力大小恒定和变化的载荷情况下一系列不同的骨重塑行为。最后,将该模型与有限元方法结合应用于牙种植治疗的一个实际案例。

结果

有限元分析结果表明,由于咬合过载,种植体颈部出现骨吸收,但在到达粗螺纹之前,吸收在一段时间后停止。同时,由于咬合负荷提供的额外机械刺激,下颌骨深处的骨密度略有增加。这种现象在一些临床情况中是可以观察到的。

意义

新模型能够描述骨过载吸收,这是当前大多数模型所不具备的一个特性。并且通过使用有限元方法模拟牙种植治疗,清楚地证明了新数学模型模拟过载骨吸收的能力。

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