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Finite Element Analysis of Multi-Implant surgery for a large area of defects

机译:大型缺陷面积多种植体手术的有限元分析

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This study aimed to confirm the application of multi-implants for mandibles with a large edentulous area using methods of finite element analysis (FEA). 3D finite element models of mandible with multi-implants were generated form reverse engineering of CT images stored in DICOM format. In the FEA of the implant model, the majority of the stress falls onto neck of the titanium implant and is well-distributed around the cylinder body of screw, resulting in less stress being applied to the cortical bone around titanium screw. Under a continual normal force of 100 N, The maximum stress on the cortical bone was located in the area around the titanium implants, and was 111.62Mpa, while the maximum stress on the titanium implant was located at the neck of the implant, and was 120.35 Mpa, much lower than the yield strength of the titanium framework (1260Mpa). The maximum deformation was around 0.65 mm. The deformation of the alveolar bone in our multi-implant model was within the acceptable range. This study show that the titanium screw used for multi-implants meets the requirements in term of physical properties for a large area of defects.
机译:本研究旨在使用有限元分析(FEA)的方法来确认用大透明区域的颌骨的多植入物的应用。 3D使用多植入物下颌骨的有限元模型是以DICOM格式存储的CT图像的逆向工程。在植入模型的FEA中,大部分压力落在钛植入物的颈部上,并且围绕螺杆缸体均匀分布,导致压力较低,施加到钛螺钉周围的皮质骨。在100n的连续正常力下,皮质骨的最大应力位于钛植入物周围的区域,并且是111.62MPa,而钛植入物的最大应力位于植入物的颈部,是120.35MPa,远低于钛框架的屈服强度(1260MPa)。最大变形约为0.65毫米。我们多植入模型中的肺泡骨的变形在可接受的范围内。本研究表明,用于多植入物的钛螺杆符合大面积缺陷的物理性质期限的要求。

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