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正常鼻结构上单侧唇裂鼻畸形的重现:有限元模型分析

Recapitulation of Unilateral Cleft Lip Nasal Deformity on Normal Nasal Structure: A Finite Element Model Analysis.

作者信息

Huang Hanyao, Luo Xiangyou, Cheng Xu, Zhang Zihao, Ma Guanqiu, Shi Bing, Li Jingtao

机构信息

State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, Department of Oral Maxillofacial Surgery, West China Hospital of Stomatology, Sichuan University, Chengdu.

Institute of Computing Technology, University of Chinese Academy of Sciences, Beijing.

出版信息

J Craniofac Surg. 2018 Nov;29(8):2220-2225. doi: 10.1097/SCS.0000000000005024.

Abstract

Cleft lip nasal deformity has been challenging to plastic surgeons. A better understanding of the biomechanical aspect of the cleft nose would contribute to a better correction. In this study, finite element model of a normal nose was constructed and loaded with forces to recapitulate the unilateral cleft lip nasal deformity. Tether at the alar base was simulated by a laterally directed force at the lateral crus, and tether at the columella base by a posteriorly directed force at the medial crus. The equivalent von-Mises stress and the total deformation consequent to different patterns of loading were captured. In accordance with clinical observations, unilaterally loaded forces caused deformation on both sides of the nose. A correlation between the patterns of loading and different cleft lip nasal deformities was documented in detail. When set at the same force magnitude, tether at the columella base led to more extensive changes in the nasal morphology and higher level of stress than at the alar base. Clear identification of major pathological tethers in the nasolabial region might lead to more accurate and stable correction of cleft lip nasal deformities.

摘要

唇裂鼻畸形一直是整形外科医生面临的挑战。更好地理解裂鼻的生物力学方面将有助于更好地进行矫正。在本研究中,构建了一个正常鼻子的有限元模型,并施加力以模拟单侧唇裂鼻畸形。鼻翼基部的系带通过在外侧脚施加侧向力来模拟,鼻小柱基部的系带通过在内侧脚施加向后的力来模拟。记录了不同加载模式下的等效冯·米塞斯应力和总变形。根据临床观察,单侧加载力会导致鼻子两侧变形。详细记录了加载模式与不同唇裂鼻畸形之间的相关性。当设置相同的力大小时,鼻小柱基部的系带比鼻翼基部的系带导致更广泛的鼻腔形态变化和更高水平的应力。明确识别鼻唇区域的主要病理性系带可能会导致更准确、稳定地矫正唇裂鼻畸形。

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