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使用径向功能梯度生物材料来降低牙种植体-骨界面周围的最大应力和应力屏蔽效应。

To reduce the maximum stress and the stress shielding effect around a dental implant-bone interface using radial functionally graded biomaterials.

作者信息

Asgharzadeh Shirazi H, Ayatollahi M R, Asnafi A

机构信息

a Fatigue and Fracture Research Laboratory , Center of Excellence in Experimental Solid Mechanics and Dynamics, School of Mechanical Engineering, Iran University of Science and Technology , Tehran , Iran.

b Hydro-Aeronautical Research Center, Shiraz University , Shiraz , Iran.

出版信息

Comput Methods Biomech Biomed Engin. 2017 May;20(7):750-759. doi: 10.1080/10255842.2017.1299142. Epub 2017 Mar 13.

Abstract

In a dental implant system, the value of stress and its distribution plays a pivotal role on the strength, durability and life of the implant-bone system. A typical implant consists of a Titanium core and a thin layer of biocompatible material such as the hydroxyapatite. This coating has a wide range of clinical applications in orthopedics and dentistry due to its biocompatibility and bioactivity characteristics. Low bonding strength and sudden variation of mechanical properties between the coating and the metallic layers are the main disadvantages of such common implants. To overcome these problems, a radial distributed functionally graded biomaterial (FGBM) was proposed in this paper and the effect of material property on the stress distribution around the dental implant-bone interface was studied. A three-dimensional finite element simulation was used to illustrate how the use of radial FGBM dental implant can reduce the maximum von Mises stress and, also the stress shielding effect in both the cortical and cancellous bones. The results, of course, give anybody an idea about optimized behaviors that can be achieved using such materials. The finite element solver was validated by familiar methods and the results were compared to previous works in the literature.

摘要

在牙种植体系统中,应力值及其分布对种植体 - 骨系统的强度、耐久性和寿命起着关键作用。典型的种植体由钛芯和一层薄的生物相容性材料(如羟基磷灰石)组成。由于其生物相容性和生物活性特性,这种涂层在骨科和牙科领域有广泛的临床应用。涂层与金属层之间的低结合强度以及机械性能的突然变化是此类常见种植体的主要缺点。为克服这些问题,本文提出了一种径向分布的功能梯度生物材料(FGBM),并研究了材料性能对牙种植体 - 骨界面周围应力分布的影响。使用三维有限元模拟来说明径向FGBM牙种植体的使用如何降低最大冯·米塞斯应力,以及如何减少皮质骨和松质骨中的应力屏蔽效应。当然,结果让人们了解到使用此类材料可以实现的优化行为。通过熟悉的方法对有限元求解器进行了验证,并将结果与文献中先前的研究进行了比较。

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