Korkmaz Fatih Mehmet, Korkmaz Yavuz Tolga, Yaluğ Suat, Korkmaz Turan
Department of Prosthodontics, Karadeniz Technical University, Trabzon, Turkey.
J Oral Implantol. 2012 Oct;38(5):557-67. doi: 10.1563/AAID-JOI-D-10-00111. Epub 2010 Oct 6.
The aim of this study was to evaluate the stress distribution in the bone around dental and zygomatic implants for 4 different implant-supported obturator prostheses designs in a unilaterally maxillary defect using a 3-dimensional finite element stress analysis. A 3-dimensional finite element model of the human unilateral maxillary defect was constructed. Four different implant-supported obturator prostheses were modeled; model 1 with 2 zygomatic implants and 1 dental implant, model 2 with 2 zygomatic implants and 2 dental implants, model 3 with 2 zygomatic implants and 3 dental implants, and model 4 with 1 zygomatic implant and 3 dental implants. Bar attachments were used as superstructure. A 150-N vertical load was applied in 3 different ways, and von Mises stresses in the cortical bone around implants were evaluated. When the models (model 1-3) were compared in terms of number of implants, all of the models showed similar highest stress values under the first loading condition, and these values were less than under model 4 conditions. The highest stress values of models 1-4 under the first loading condition were 8.56, 8.59, 8.32, and 11.55 Mpa, respectively. The same trend was also observed under the other loading conditions. It may be concluded that the use of a zygomatic implant on the nondefective side decreased the highest stress values, and increasing the number of dental implants between the most distal and most mesial implants on the nondefective side did not decrease the highest stress values.
本研究的目的是使用三维有限元应力分析,评估在单侧上颌骨缺损中,4种不同种植体支持的阻塞器假体设计在牙种植体和颧骨种植体周围骨组织中的应力分布情况。构建了人类单侧上颌骨缺损的三维有限元模型。对4种不同的种植体支持的阻塞器假体进行建模;模型1有2枚颧骨种植体和1枚牙种植体,模型2有2枚颧骨种植体和2枚牙种植体,模型3有2枚颧骨种植体和3枚牙种植体,模型4有1枚颧骨种植体和3枚牙种植体。使用杆式附着体作为上部结构。以3种不同方式施加150 N的垂直载荷,并评估种植体周围皮质骨中的von Mises应力。当比较模型(模型1 - 3)的种植体数量时,在第一种加载条件下,所有模型均显示出相似的最高应力值,且这些值低于模型4的情况。在第一种加载条件下,模型1 - 4的最高应力值分别为8.56、8.59、8.32和11.55 Mpa。在其他加载条件下也观察到相同趋势。可以得出结论,在无缺损侧使用颧骨种植体可降低最高应力值,并且增加无缺损侧最远端和最近端种植体之间的牙种植体数量并不会降低最高应力值。