Laboratory of Surgical Neuroanatomy, Human Anatomy and Embryology Unit, Faculty of Medicine and Health Sciences, University of Barcelona, c/ Casanova 143, 08036, Barcelona, Spain.
CAP Antón Borja, Consorci Sanitari de Terrassa, c/ Edison s/n, 08191, Rubí, Spain.
J Med Syst. 2018 Mar 5;42(4):72. doi: 10.1007/s10916-018-0919-4.
We describe a new and freely available 3D interactive model of the intracranial internal carotid artery (ICA) and the skull base that also allows to display and compare its main segment classifications. High-resolution 3D human angiography (isometric voxel's size 0.36 mm) and Computed Tomography angiography images were exported to Virtual Reality Modeling Language (VRML) format for processing in a 3D software platform and embedding in a 3D Portable Document Format (PDF) document that can be freely downloaded at http://diposit.ub.edu/dspace/handle/2445/112442 and runs under Acrobat Reader on Mac and Windows computers and Windows 10 tablets. The 3D-PDF allows for visualisation and interaction through JavaScript-based functions (including zoom, rotation, selective visualization and transparentation of structures or a predefined sequence view of the main segment classifications if desired). The ICA and its main branches and loops, the Gasserian ganglion, the petrolingual ligament and the proximal and distal dural rings within the skull base environment (anterior and posterior clinoid processes, silla turcica, ethmoid and sphenoid bones, orbital fossae) may be visualized from different perspectives. This interactive 3D-PDF provides virtual views of the ICA and becomes an innovative tool to improve the understanding of the neuroanatomy of the ICA and surrounding structures.
我们描述了一种新的、免费的颅内颈内动脉(ICA)和颅底的 3D 交互式模型,该模型还允许显示和比较其主要节段分类。高分辨率的 3D 人体血管造影(等距体素大小为 0.36 毫米)和计算机断层血管造影图像被导出到虚拟现实建模语言(VRML)格式,以便在 3D 软件平台中进行处理,并嵌入到 3D 可移植文档格式(PDF)文档中,该文档可在 http://diposit.ub.edu/dspace/handle/2445/112442 上免费下载,并可在 Mac 和 Windows 计算机以及 Windows 10 平板电脑上的 Acrobat Reader 中运行。3D-PDF 通过基于 JavaScript 的功能进行可视化和交互(包括缩放、旋转、选择性可视化和结构的透明化,或按预设的主要节段分类顺序视图)。ICA 及其主要分支和环、三叉神经节、翼腭韧带以及颅底环境中的近端和远端硬脑膜环(前、后床突、蝶鞍、筛骨和蝶骨、眶窝)可以从不同的角度进行可视化。这种交互式 3D-PDF 提供了 ICA 的虚拟视图,成为了一种创新的工具,可用于提高对 ICA 及其周围结构神经解剖结构的理解。