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Three-Dimensional Finite Element Analysis of Anterior Single Implant-Supported Prostheses with Different Bone Anchorages

机译:具有不同骨锚固的前单个植入物支撑假体的三维有限元分析

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摘要

The aim of this study was to evaluate the stress distribution of monocortical and bicortical implant placement of external hexagon connection in the anterior region of the maxilla by 3D finite element analysis (FEA). 3D models were simulated to represent a bone block of anterior region of the maxilla containing an implant (4.0 × 10.0 mm) and an implant-supported cemented metalloceramic crown of the central incisor. Different techniques were tested (monocortical, bicortical, and bicortical associated with nasal floor elevation). FEA was performed in FEMAP/NeiNastran software using loads of 178 N at 0°, 30°, and 60° in relation to implant long axis. The von Mises, maximum principal stress, and displacement maps were plotted for evaluation. Similar stress patterns were observed for all models. Oblique loads increased the stress concentration on fixation screws and in the cervical area of the implants and bone around them. Bicortical technique showed less movement tendency in the implant and its components. Cortical bone of apical region showed increase of stress concentration for bicortical techniques. Within the limitations of this study, oblique loading increased the stress concentrations for all techniques. Moreover, bicortical techniques showed the best biomechanical behavior compared with monocortical technique in the anterior maxillary area.
机译:这项研究的目的是通过3D有限元分析(FEA)评估上颌骨前部外部六边形连接的单皮质和双皮质植入物的应力分布。模拟了3D模型,以表示上颌骨前部区域的骨块,其中包括植入物(4.0×10.0mm)和中央切牙的植入物支撑的胶结金属陶瓷冠。测试了不同的技术(单皮质,双皮质和双皮质与鼻底抬高相关)。 FEA是在FEMAP / NeiNastran软件中执行的,相对于种植体长轴,在0°,30°和60°时使用178 loadsN的载荷。绘制了冯·米塞斯(von Mises),最大主应力和位移图进行评估。对于所有模型,观察到相似的应力模式。倾斜的载荷增加了应力集中在固定螺钉上以及植入物的子宫颈区域和它们周围的骨头中。双皮质技术在植入物及其组件中显示出较少的运动趋势。对于双皮质技术,根尖区的皮质骨显示出应力集中的增加。在本研究的范围内,斜向载荷增加了所有技术的应力集中。此外,与单皮质技术相比,双皮质技术在上颌前区表现出最佳的生物力学行为。

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