Prats-Galino Alberto, Reina Miguel A, Mavar Haramija Marija, Puigdellivol-Sánchez Anna, Juanes Méndez Juan A, De Andrés José A
Laboratory of Surgical NeuroAnatomy, Human Anatomy and Embryology Unit, Faculty of Medicine, Universitat de Barcelona, Barcelona, Spain.
Clin Anat. 2015 Mar;28(2):205-12. doi: 10.1002/ca.22479. Epub 2014 Oct 28.
A 3D model of lumbar structures of anesthetic interest was reconstructed from human magnetic resonance (MR) images and embedded in a Portable Document Format (PDF) file, which can be opened by freely available software and used offline. The MR images were analyzed using a specific 3D software platform for biomedical data. Models generated from manually delimited volumes of interest and selected MR images were exported to Virtual Reality Modeling Language format and were presented in a PDF document containing JavaScript-based functions. The 3D file and the corresponding instructions and license files can be downloaded freely at http://diposit.ub.edu/dspace/handle/2445/44844?locale=en. The 3D PDF interactive file includes reconstructions of the L3-L5 vertebrae, intervertebral disks, ligaments, epidural and foraminal fat, dural sac and nerve root cuffs, sensory and motor nerve roots of the cauda equina, and anesthetic approaches (epidural medial, spinal paramedial, and selective nerve root paths); it also includes a predefined sequential educational presentation. Zoom, 360° rotation, selective visualization, and transparency graduation of each structure and clipping functions are available. Familiarization requires no specialized informatics knowledge. The ease with which the document can be used could make it valuable for anatomical and anesthetic teaching and demonstration of patient information.
利用人体磁共振(MR)图像重建了具有麻醉学研究价值的腰椎结构三维模型,并将其嵌入便携式文档格式(PDF)文件中,该文件可通过免费软件打开并离线使用。使用特定的生物医学数据三维软件平台对MR图像进行分析。从手动划定的感兴趣区域和选定的MR图像生成的模型被导出为虚拟现实建模语言格式,并呈现在包含基于JavaScript函数的PDF文档中。三维文件以及相应的说明和许可文件可在http://diposit.ub.edu/dspace/handle/2445/44844?locale=en上免费下载。三维PDF交互式文件包括L3-L5椎体、椎间盘、韧带、硬膜外和椎间孔脂肪、硬脊膜囊和神经根袖、马尾神经的感觉和运动神经根以及麻醉入路(硬膜外正中、脊髓旁正中以及选择性神经根路径)的重建;它还包括一个预定义的顺序性教学演示。每个结构都具备缩放、360°旋转、选择性可视化、透明度渐变以及裁剪功能。熟悉该文档的使用无需专业的信息学知识。该文档使用的便捷性使其在解剖学和麻醉学教学以及患者信息演示方面具有价值。