Department of Neurology, University of Mississippi Medical Center, Jackson, Mississippi.
Department of Radiology, University of Mississippi Medical Center, Jackson, Mississippi.
Anat Sci Educ. 2017 Nov;10(6):598-606. doi: 10.1002/ase.1702. Epub 2017 May 11.
Recent improvements in three-dimensional (3D) virtual modeling software allows anatomists to generate high-resolution, visually appealing, colored, anatomical 3D models from computed tomography (CT) images. In this study, high-resolution CT images of a cadaver were used to develop clinically relevant anatomic models including facial skull, nasal cavity, septum, turbinates, paranasal sinuses, optic nerve, pituitary gland, carotid artery, cervical vertebrae, atlanto-axial joint, cervical spinal cord, cervical nerve root, and vertebral artery that can be used to teach clinical trainees (students, residents, and fellows) approaches for trans-sphenoidal pituitary surgery and cervical spine injection procedure. Volume, surface rendering and a new rendering technique, semi-auto-combined, were applied in the study. These models enable visualization, manipulation, and interaction on a computer and can be presented in a stereoscopic 3D virtual environment, which makes users feel as if they are inside the model. Anat Sci Educ 10: 598-606. © 2017 American Association of Anatomists.
最近,三维(3D)虚拟建模软件的改进使得解剖学家能够从计算机断层扫描(CT)图像生成高分辨率、视觉效果好、彩色的解剖学 3D 模型。在这项研究中,使用高分辨率的尸体 CT 图像来开发临床相关的解剖模型,包括面颅骨、鼻腔、鼻中隔、鼻甲、副鼻窦、视神经、垂体、颈动脉、颈椎、寰枢关节、颈脊髓、颈神经根和椎动脉,这些模型可用于教授临床学员(学生、住院医师和研究员)经蝶窦垂体手术和颈椎注射程序的入路。该研究应用了体积、表面渲染和一种新的渲染技术,半自动组合。这些模型可以在计算机上进行可视化、操作和交互,并可以在立体 3D 虚拟环境中呈现,使用户感觉仿佛置身于模型内部。解剖科学教育 10:598-606. ©2017 年美国解剖学家协会。