[Establishment of pharyngeal 3-dimensional finite element model of patients with isolated cleft palate].

Gu Mei-zhen, Xu Hong-ming, C. Fang, Li Xiao-yan, Jia Yu-gang, Liu Ke-yong
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Abstract

PURPOSE The aim of this study was to provide basis for future design and selection of cleft palate surgery through establishing finite element model of pharyngeal cavity which was suitable for biomechanical analysis. METHODS One patient with isolated cleft palate and 1 normal child underwent multilayer head CT examination. The scanned data of pharyngeal cavity were imported into Mimics software for a 3-D geometric model reconstruction. The model was divided into a grid, so it can be further processed for subsequent finite element analysis. RESULTS After applying 5cm water column pressure load of 0.0005 MPa at the back edge of the soft palate in the two models respectively, the results showed that the maximum stress of the abnormal nasopharyngeal cavity model was 0.025 MPa, greater than the normal model (0.017 MPa). The same pressure loading was applied to different parts of the two models, the stress change area in the posterior margin of the soft palate and the middle of the palate was the same, and the stress in the front of the hard palate was smaller. CONCLUSIONS Finite element model has good biomechanical characteristics and geometric similarity. It can be used in isolated cleft palate with preoperative biomechanical analysis, for repairing and functional reconstructive surgery to provide ideal biomechanical model predicts.
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[孤立性腭裂患者咽部三维有限元模型的建立]。
目的通过建立适合于生物力学分析的咽腔有限元模型,为今后腭裂手术的设计和选择提供依据。方法对1例孤立性腭裂患儿和1例正常患儿行多层头部CT检查。将咽腔扫描数据导入Mimics软件进行三维几何模型重建。将模型划分为网格,为后续有限元分析做进一步处理。结果在两种模型软腭后缘分别施加0.0005 MPa的5cm水柱压力载荷后,异常鼻咽腔模型的最大应力为0.025 MPa,大于正常模型(0.017 MPa)。在两种模型的不同部位施加相同的压力载荷,软腭后缘和中腭的应力变化面积相同,硬腭前部的应力较小。结论有限元模型具有良好的生物力学特性和几何相似性。可用于孤立性腭裂的术前生物力学分析,为腭裂修复及功能重建手术提供理想的生物力学模型预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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