The Digital Anatomist Information System and Its Use in the Generation and Delivery of Web-Based Anatomy Atlases

James F. Brinkley , Scott W. Bradley , John W. Sundsten , Cornelius Rosse
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引用次数: 57

Abstract

Advances in network and imaging technology, coupled with the availability of 3-D datasets such as the Visible Human, provide a unique opportunity for developing information systems in anatomy that can deliver relevant knowledge directly to the clinician, researcher or educator. A software framework is described for developing such a system within a distributed architecture that includes spatial and symbolic anatomy information resources, Web and custom servers, and authoring and end-user client programs. The authoring tools have been used to create 3-D atlases of the brain, knee and thorax that are used both locally and throughout the world. For the one and a half year period from June 1995-January 1997, the on-line atlases were accessed by over 33,000 sites from 94 countries, with an average of over 4000 "hits" per day, and 25,000 hits per day during peak exam periods. The atlases have been linked to by over 500 sites, and have received at least six unsolicited awards by outside rating institutions. The flexibility of the software framework has allowed the information system to evolve with advances in technology and representation methods. Possible new features include knowledge-based image retrieval and tutoring, dynamic generation of 3-D scenes, and eventually, real-time virtual reality navigation through the body. Such features, when coupled with other on-line biomedical information resources, should lead to interesting new ways for managing and accessing structural information in medicine.
数字解剖学家信息系统及其在基于网络的解剖学地图集的生成和传递中的应用
网络和成像技术的进步,加上三维数据集(如Visible Human)的可用性,为开发解剖学信息系统提供了一个独特的机会,可以直接向临床医生、研究人员或教育工作者提供相关知识。本文描述了用于在分布式体系结构中开发这样一个系统的软件框架,该体系结构包括空间和符号解剖信息资源、Web和自定义服务器,以及创作和最终用户客户端程序。这些创作工具已经被用来创建大脑、膝盖和胸腔的三维地图集,这些地图集在当地和全世界都得到了应用。在1995年6月至1997年1月的一年半期间,来自94个国家的33,000多个站点访问了联机地图集,平均每天有4,000多个“点击”,在考试高峰期间每天有25,000个“点击”。这些地图集已被500多个网站链接,并获得了至少6个外部评级机构主动授予的奖项。软件框架的灵活性使信息系统能够随着技术和表示方法的进步而发展。可能的新功能包括基于知识的图像检索和辅导,三维场景的动态生成,以及最终通过身体进行实时虚拟现实导航。这些特性与其他联机生物医学信息资源相结合,应该会产生管理和获取医学结构信息的有趣的新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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