Turinsky Andrei L, Fanea Elena, Trinh Quang, Wat Stephen, Hallgrímsson Benedikt, Dong Xiaoli, Shu Xueling, Stromer Julie N, Hill Jonathan W, Edwards Carol, Grosenick Brenda, Yajima Masumi, Sensen Christoph W
Sun Center of Excellence for Visual Genomics, University of Calgary, Calgary, Alberta, Canada.
Anat Sci Educ. 2008 Jan;1(1):10-8. doi: 10.1002/ase.3.
The authors have created a software system called the CAVEman, for the visual integration and exploration of heterogeneous anatomical and biomedical data. The CAVEman can be applied for both education and research tasks. The main component of the system is a three-dimensional digital atlas of the adult male human anatomy, structured according to the nomenclature of Terminologia Anatomica. The underlying data-indexing mechanism uses standard ontologies to map a range of biomedical data types onto the atlas. The CAVEman system is now used to visualize genetic processes in the context of the human anatomy and to facilitate visual exploration of the data. Through the use of Javatrade mark software, the atlas-based system is portable to virtually any computer environment, including personal computers and workstations. Existing Java tools for biomedical data analysis have been incorporated into the system. The affordability of virtual-reality installations has increased dramatically over the last several years. This creates new opportunities for educational scenarios that model important processes in a patient's body, including gene expression patterns, metabolic activity, the effects of interventions such as drug treatments, and eventually surgical simulations.
作者创建了一个名为CAVEman的软件系统,用于对异构解剖学和生物医学数据进行可视化整合与探索。CAVEman可应用于教育和研究任务。该系统的主要组件是一个成年男性人体解剖学的三维数字图谱,它是根据《解剖学名词》的命名法构建的。底层数据索引机制使用标准本体将一系列生物医学数据类型映射到图谱上。CAVEman系统现在用于在人体解剖学背景下可视化遗传过程,并便于对数据进行可视化探索。通过使用Java商标软件,基于图谱的系统几乎可以移植到任何计算机环境,包括个人计算机和工作站。现有的用于生物医学数据分析的Java工具已被纳入该系统。在过去几年中,虚拟现实设备的可承受性大幅提高。这为模拟患者体内重要过程的教育场景创造了新机会,这些过程包括基因表达模式、代谢活动、药物治疗等干预措施的效果,最终还有手术模拟。