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Design of a Metal 3D Printing Patient-Specific Repairing Thin Implant for Zygomaticomaxillary Complex Bone Fracture Based on Buttress Theory Using Finite Element Analysis

机译:基于支撑理论使用有限元分析,基于支撑理论的颧骨瘤复合骨骨折的金属3D印刷患者特异性修复薄植入物

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摘要

This study developed a zygomaticomaxillary complex (ZMC) patient-specific repairing thin (PSRT) implant based on the buttress theory by integrating topology optimization and finite element (FE) analysis. An intact facial skeletal (IFS) model was constructed to perform topology optimization to obtain a hollow skeleton (HS) model with the structure and volume optimized. The PSRT implant was designed based on the HS contour which represented similar trends as vertical buttress pillars. A biomechanical analysis was performed on a ZMC fracture fixation with the PSRT implant and two traditional mini-plates under uniform axial loads applied on posterior teeth with 250 N. Results indicated that the variation in maximum bone stress and model volume between the IFS and HS models was 15.4% and 75.1%, respectively. Small stress variations between the IFS model and repairing with a PSRT implant (2.75%–26.78%) were found for compressive stress at frontal process and tensile stress at the zygomatic process. Comparatively, large stress variations (30.67%–96.26%) with different distributions between the IFS model and mini-plate models were found at the corresponding areas. This study concluded that the main structure/contour design of the ZMC repair implant according to the buttress position and orientation can obtain a favorable mechanical behavior.
机译:本研究通过集成拓扑优化和有限元(FE)分析,基于支撑理论,开发了一种基于Zygomaticomaxilly(ZMC)患者特异性修复薄(PSRT)植入物。构建完整的面部骨架(IFS)模型以进行拓扑优化,以获得具有结构和体积的空心骨架(HS)模型。 PSRT植入物是基于HS轮廓设计的,其代表了与垂直支撑柱的类似趋势。在ZMC骨折固定对具有PSRT植入物的ZMC断裂固定进行生物力学分析,并在施加在施加在牙齿上的均匀轴向载荷下的传统型夹板,结果表明IFS和HS型号之间的最大骨应力和模型体积的变化分别为15.4%和75.1%。 IFS模型和用PSRT植入的修复的小应力变化(2.75%-26.78%)被发现用于在颧骨过程中的正面过程中的压缩应力和拉伸应力。相对轻地,在相应的区域发现了IFS模型和微型板模型之间的不同分布的大应力变化(30.67%-96.26%)。这项研究得出结论,根据支撑位置和方向的ZMC修复植入物的主要结构/轮廓设计可以获得有利的力学行为。

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