Zhang Liuqing, Wang XinYue, Sun Yiyuan, Wang Shuqin, Zhang FuLong, Zhang Zhen
Department of Otolaryngology Head and Neck Surgery, The First Affiliated Hospital of Bengbu Medical College, Bengbu, Anhui 233000, China.
Department of Ophthalmology, The First Affiliated Hospital of Anhui Medical University, Hefei, Anhui 230022, China.
Emerg Med Int. 2023 Mar 31;2023:3783051. doi: 10.1155/2023/3783051. eCollection 2023.
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. . 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.
鼻骨是一对长形的小骨,其上端狭窄,下端宽阔,构成鼻背的基部。它与额骨的鼻部、上颌骨的额突以及筛骨的中板共同构成外鼻的骨骼支架。本文将DICOM图像数据文件导入Mimics软件进行三维重建。同时,使用Geomagic软件进行相关图像处理,并利用有限元软件ANSYS建立有限元模型,分析鼻上颌复合体的应力特征。鼻骨下段及鼻骨与上颌骨交界处的最大主应力和最大应变力相对较大。当相同外力作用于鼻骨下段且角度为0°(矢状力)时,最大主应力和最大应变力最小。当角度继续增大时,最大主应力和最大应变力持续增大。