Kawamata Shinsuke, Kawai Tadashi, Yasuge Erika, Hoshi Isao, Minamino Tadaharu, Kurosu Shingo, Yamada Hiroyuki
Division of Oral and Maxillofacial Surgery, School of Dentistry, Iwate Medical University, 19-1, Uchimaru, Morioka 020-8505, Iwate, Japan.
Department of Elementary Material Process Technology, Iwate Industrial Research Institute, 2-4-25, Kitaiioka, Morioka 020-0857, Iwate, Japan.
Materials (Basel). 2024 Jul 18;17(14):3557. doi: 10.3390/ma17143557.
Mandibular reconstructive surgery is necessary for large bone defects. Although various reconstruction methods have been performed clinically, there is no mandibular reconstruction method that meets both sufficient strength criteria and the patient's specific morphology. In this study, the material strength of the cylindrical lattice structures formed by electron-beam melting additive manufacturing using titanium alloy powder was investigated for mandibular reconstruction. The virtual strengths of 28 lattice structures were compared using numerical material tests with finite element method software. Subsequently, to compare the material properties of the selected structures from the preliminary tests, compression test, static bending test and fatigue test were conducted. The results showed that there were correlations with relative density and significant differences among the various structures when comparing internal stress with deformation, although there was a possibility of localized stress concentration and non-uniform stress distribution based on the lattice structure characteristics. These results suggest that the lattice structure of body diagonals with nodes and a cell size of 3.0 mm is a potential candidate for metallic artificial mandibles in mandibular reconstruction surgery.
对于大面积骨缺损,下颌骨重建手术是必要的。尽管临床上已经实施了各种重建方法,但尚无一种下颌骨重建方法能同时满足足够的强度标准和患者的特定形态要求。在本研究中,对使用钛合金粉末通过电子束熔化增材制造形成的圆柱形晶格结构的材料强度进行了研究,以用于下颌骨重建。使用有限元方法软件通过数值材料测试比较了28种晶格结构的虚拟强度。随后,为了比较初步测试中所选结构的材料性能,进行了压缩试验、静态弯曲试验和疲劳试验。结果表明,在比较内应力与变形时,各种结构之间存在与相对密度的相关性和显著差异,尽管基于晶格结构特征存在局部应力集中和应力分布不均匀的可能性。这些结果表明,具有节点且单元尺寸为3.0 mm的体对角线晶格结构是下颌骨重建手术中金属人工下颌骨的潜在候选结构。