Department of Prosthodontics, Baskent University, Ankara, Turkey.
Int J Oral Maxillofac Implants. 2010 Jan-Feb;25(1):95-103.
The aim of this study was to evaluate the von Mises, compressive, and tensile stresses occurring on three different zirconia dental implants and surrounding bone with three-dimensional finite element analysis.
Three different zirconia implants (Z-Systems, Ziterion, and White-Sky), 10 mm in length and 4 mm in diameter, and anterior maxillary bone were modeled using three-dimensional finite element analyses. Zirconia implants were placed into the maxillary left central incisor region. Loading was applied in horizontal and oblique axes (at angles of 90 and 30 degrees with respect to the implant long axes). Oblique loading was 178 N and horizontal loading was 25.5 N.
Under oblique loading, von Mises stresses for all implants were similar, and under horizontal loading conditions, the highest von Mises stress was found at the buccal and palatal neck region of the Ziterion implant (46.57 MPa). In cortical bone, the highest von Mises stresses were observed at the buccal region of the Z-Systems implant under oblique and horizontal loading conditions (26.65 MPa and 10.74 MPa, respectively). The highest compressive stresses were observed at the implant buccal neck region and cortical bone interface of the Z-Systems implant under oblique and horizontal loading conditions. For both loading conditions, the highest tensile stress values were observed at the implant palatal region and cortical bone interface of the Z-Systems implant.
The von Mises, compressive, and tensile stresses that occurred in cortical bone were higher than those observed in trabecular bone. Generally, the stresses in the Z-Systems implant were higher than in the other zirconia implants. The differences between the stress values occurring on the zirconia implants may be related to the different body and thread designs of these implants.
本研究旨在通过三维有限元分析评估三种不同氧化锆牙科种植体及其周围骨的冯·米塞斯(von Mises)、压缩和拉伸应力。
使用三维有限元分析对三种不同的氧化锆种植体(Z-Systems、Ziterion 和 White-Sky)进行建模,长度为 10 毫米,直径为 4 毫米,以及前上颌骨。将氧化锆种植体放置在上颌左中切牙区域。在水平和倾斜轴(相对于种植体长轴分别为 90 和 30 度)上施加负载。倾斜负载为 178N,水平负载为 25.5N。
在倾斜负载下,所有种植体的冯·米塞斯(von Mises)应力相似,而在水平负载条件下,Ziterion 种植体的颊侧和腭侧颈部区域发现的最大冯·米塞斯(von Mises)应力最高(46.57MPa)。在皮质骨中,在倾斜和水平加载条件下,Z-Systems 种植体的颊侧区域观察到最大的冯·米塞斯(von Mises)应力(分别为 26.65MPa 和 10.74MPa)。在倾斜和水平加载条件下,最大的压缩应力出现在 Z-Systems 种植体的种植体颊侧颈部区域和皮质骨界面。对于两种加载条件,最大的拉伸应力值出现在 Z-Systems 种植体的种植体腭侧区域和皮质骨界面。
皮质骨中发生的冯·米塞斯(von Mises)、压缩和拉伸应力高于小梁骨中观察到的应力。通常,Z-Systems 种植体中的应力高于其他氧化锆种植体。这些种植体上发生的应力值之间的差异可能与这些种植体不同的体部和螺纹设计有关。