冯·米塞斯屈服准则
有限元法
材料科学
压力(语言学)
垂直的
结构工程
医学
生物医学工程
复合材料
机械
解剖
几何学
数学
物理
哲学
语言学
工程类
作者
Dawei Wang,Ning Zeng,Yiping Wu
标识
DOI:10.1016/j.bjps.2023.07.027
摘要
Background Septal extension graft (SEG) is an effective method to control the projection, rotation, and shape of the nasal tip. However, the structural mechanics of SEG have not yet been adequately determined. Objectives The purpose of this study was to examine the effect of SEG parameters on nasal tip support using finite element analysis (FEA). Methods A multicomponent nasal model was constructed from a computed tomographic scan. A control model without graft and a total of 15 models with different SEGs were created, regarding the direction, length, width, and piece of SEG. The nasal tip compression was simulated to analyze the von Mises stress, reaction force, and strain energy of the tip structure. Results The SEG increased the max stress, reaction force, and strain energy of the nasal tip compared to the normal control. The SEG perpendicular to the nasal dorsum resulted in the highest max stress, reaction force, and strain energy for the same size of SEG. With the length increasing from 15*8*1 mm to 25*8*1 mm, the reaction force remained relatively stable, but the stress on the graft reduced significantly. Adding the width and pieces of the SEG increased the reaction force and strain energy of the tip. Conclusion The placement of SEG can strengthen the nasal tip support. The direction, length, width, and piece of SEG have an impact on the mechanics. LEVEL OF EVIDENCE Diagnostic, III
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