Establishment of a Finite Element Model of Normal Nasal Bone and Analysis of Its Biomechanical Characteristics

Author:

Zhang Liuqing1,Wang XinYue2,Sun Yiyuan3,Wang Shuqin4,Zhang FuLong5,Zhang Zhen6ORCID

Affiliation:

1. Department of Otolaryngology Head and Neck Surgery, The First Affiliated Hospital of Bengbu Medical College, Bengbu, Anhui 233000, China

2. Department of Ophthalmology, The First Affiliated Hospital of Anhui Medical University, Hefei, Anhui 230022, China

3. Department of Otolaryngology Head and Neck Surgery, ShangHai Nineth Hospital, School of Medicine, Shanghai Jiaotong University, Shanghai 200001, China

4. Department of Imaging, The First Affiliated Hospital of Bengbu Medical College, Bengbu, Anhui 233000, China

5. Department of Emergency Surgery, The First Affiliated Hospital of Bengbu Medical College, Bengbu, Anhui 233000, China

6. Department of Pediatric, The First Affiliated Hospital of Bengbu Medical College, Bengbu, Anhui 233000, China

Abstract

Nasal bone is a long, paired series of small bones, which is narrow at the top and broad at the bottom, that forms the base of the nasal dorsum. Together with the nasal part of the frontal bone, the frontal process of the maxilla and the middle plate of the ethmoid bone constitute the bone scaffold of the external nose. In this paper, the DICOM image data file was imported into the Mimics software for 3D reconstruction. At the same time, the Geomagic software was used for relevant image processing, and the finite element software ANSYS was used to establish a finite element model to analyze the stress characteristics of the nasomaxillary complex. Results. The maximum principal stress and maximum strain force at the lower segment of nasal bone and the junction of nasal bone and maxilla were relatively large. When the same external force acts on the lower segment of the nasal bone and the angle is 0° (sagittal force), the maximum principal stress and maximum strain force are the smallest. When the angle continues to increase, the maximum principal stress and maximum strain force continue to increase.

Publisher

Hindawi Limited

Subject

Emergency Medicine

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