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颞下窝的可视化:通过三维建模增强解剖学学习。

Visualization of the infratemporal fossa: enhancing anatomical learning through three-dimensional modeling.

作者信息

Cho Woohyun, Kim Hye Jin, Hur Mi-Sun, Lee Han-Soo, Youn Kwan Hyun

机构信息

Division in Biomedical Art, Department of Fine Art, Incheon Catholic University Graduate School, Incheon, Korea.

Department of Anatomy, Daegu Catholic University School of Medicine, Daegu, Korea.

出版信息

Anat Cell Biol. 2024 Dec 31;57(4):592-597. doi: 10.5115/acb.24.127. Epub 2024 Aug 19.

Abstract

The infratemporal fossa and pterygopalatine fossa are critical pathways for blood vessels and nerves leading to the orbit, nasal cavity, and oral cavity. Anatomical observation of these areas is challenging for learners due to their complex connections with surrounding structures and their deep location within the body. Since it is not easy to understand this area in three dimensions with only textbook images, there is a need to produce three-dimensional (3D) content. Most existing 3D data have reconstructed the digital imaging and communication in medicine files from computed tomography images with high accuracy; however, the surrounding structures often obstruct the view. For this reason, this project utilized Cinema4D (R18) software to refine the modeled bones and to create 3D models of muscles, blood vessels, and nerves that accurately represent their anatomical shapes and pathways. To facilitate easier access for learners via PC, the content was converted into PDF format. This enables the educational materials to be more easily viewed and the main structures more clearly observed using a computer-based viewer.

摘要

颞下窝和翼腭窝是通向眼眶、鼻腔和口腔的血管和神经的关键通道。由于这些区域与周围结构的复杂连接以及它们在体内的深部位置,对学习者来说,对这些区域进行解剖学观察具有挑战性。仅通过教科书图像很难从三维角度理解该区域,因此需要制作三维(3D)内容。大多数现有的3D数据已从计算机断层扫描图像中高精度地重建了医学文件中的数字成像和通信;然而,周围结构常常遮挡视野。因此,本项目利用Cinema4D(R18)软件对建模的骨骼进行细化,并创建肌肉、血管和神经的3D模型,这些模型能准确呈现它们的解剖形状和路径。为便于学习者通过个人电脑更轻松地访问,内容被转换为PDF格式。这使得使用基于计算机的查看器能更轻松地查看教育材料,并更清晰地观察主要结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22ee/11663524/982f484e1e43/acb-57-4-592-f1.jpg

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