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涂层厚度及其材料对牙种植体应力分布的影响。

Effect of coating thickness and its material on the stress distribution for dental implants.

作者信息

Hedia H S

机构信息

Production Engineering & Mechanical Design Department Faculty of Engineering, Mansoura University, Mansoura, Egypt.

出版信息

J Med Eng Technol. 2007 Jul-Aug;31(4):280-7. doi: 10.1080/03091900600861616.

Abstract

Dental implants have been increasingly used to recover the masticatory function of lost teeth. It has been well known that the success of a dental implant is heavily dependent on initial stability and long-term osseointegration due to optimal stress distribution in the surrounding bones by the concept implant surface coating. Hydroxyapatite (HAP), as a coating material, has been widely used in dentistry due to its biocompatibility. Some investigations show a benefit of coating dental implants with HAP, and others concluded that HAP coating reduces the long-term implant survival. Therefore, the aim of this investigation is to design a new functionally graded dental implant coating, as well as studying the effect of coating thickness on the maximum von Mises stresses in bone adjacent to the coating layer. The gradation of the elastic modulus is changed along the longitudinal direction. Stress analysis using a finite element method showed that using a coating thickness of 150 microm, functionally graded from titanium at the apex to the collagen at the root, will successfully reduce the maximum von Mises stress in bone by 19% and 17% compared to collagen and HAP coating respectively.

摘要

牙种植体已越来越多地用于恢复缺失牙的咀嚼功能。众所周知,牙种植体的成功很大程度上取决于初始稳定性和长期骨整合,这是由于通过种植体表面涂层的概念,周围骨骼中能实现最佳应力分布。羟基磷灰石(HAP)作为一种涂层材料,因其生物相容性已在牙科中广泛使用。一些研究表明用HAP涂层牙种植体有好处,而另一些研究则得出结论认为HAP涂层会降低种植体的长期存活率。因此,本研究的目的是设计一种新型功能梯度牙种植体涂层,并研究涂层厚度对涂层相邻骨中最大冯·米塞斯应力的影响。弹性模量的梯度沿纵向方向变化。使用有限元方法进行的应力分析表明,与胶原蛋白涂层和HAP涂层相比,使用厚度为150微米、从顶端的钛到根部的胶原蛋白功能梯度变化的涂层,将成功地使骨中的最大冯·米塞斯应力分别降低19%和17%。

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