Mason T P, Applebaum E L, Rasmussen M, Millman A, Evenhouse R, Panko W
Department of Otolaryngology-Head and Neck Surgery, University of Illinois at Chicago College of Medicine, Eye and Ear Infirmary, Chicago, IL 60612, USA.
Otolaryngol Head Neck Surg. 2000 Feb;122(2):168-73. doi: 10.1016/S0194-5998(00)70234-8.
The human temporal bone is a 3-dimensionally complex anatomic region with many unique qualities that make anatomic teaching and learning difficult. Current teaching tools have proved only partially adequate for the needs of the aspiring otologic surgeon in learning this anatomy. We used a variety of computerized image processing and reconstruction techniques to reconstruct an anatomically accurate 3-dimensional computer model of the human temporal bone from serial histologic sections. The model is viewed with a specialized visualization system that allows it to be manipulated easily in a stereoscopic virtual environment. The model may then be interactively studied from any viewpoint, greatly simplifying the task of conceptualizing and learning this anatomy. The system also provides for simultaneous computer networking that can bring distant participants into a single shared virtual teaching environment. Future directions of the project are discussed.
人类颞骨是一个三维结构复杂的解剖区域,具有许多独特的特性,这使得解剖学的教学变得困难。目前的教学工具已被证明仅部分满足有抱负的耳科外科医生学习该解剖学的需求。我们使用了各种计算机图像处理和重建技术,从连续组织学切片重建出一个解剖结构精确的人类颞骨三维计算机模型。该模型通过一个专门的可视化系统进行查看,该系统允许在立体虚拟环境中轻松对其进行操作。然后可以从任何角度交互式地研究该模型,极大地简化了理解和学习该解剖学的任务。该系统还提供同步计算机网络功能,可将远程参与者带入单一共享虚拟教学环境。文中讨论了该项目的未来发展方向。