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The Digital Anatomist Distributed Framework and Its Applications to Knowledge-based Medical Imaging

机译:数字解剖学家分布式框架及其应用 基于知识的医学影像

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摘要

The domain of medical imaging is anatomy. Therefore, anatomic knowledge should be a rational basis for organizing and analyzing images. The goals of the Digital Anatomist Program at the University of Washington include the development of an anatomically based software framework for organizing, analyzing, visualizing and utilizing biomedical information. The framework is based on representations for both spatial and symbolic anatomic knowledge, and is being implemented in a distributed architecture in which multiple client programs on the Internet are used to update and access an expanding set of anatomical information resources. The development of this framework is driven by several practical applications, including symbolic anatomic reasoning, knowledge based image segmentation, anatomy information retrieval, and functional brain mapping. Since each of these areas involves many difficult image processing issues, our research strategy is an evolutionary one, in which applications are developed somewhat independently, and partial solutions are integrated in a piecemeal fashion, using the network as the substrate. This approach assumes that networks of interacting components can synergistically work together to solve problems larger than either could solve on its own. Each of the individual projects is described, along with evaluations that show that the individual components are solving the problems they were designed for, and are beginning to interact with each other in a synergistic manner. We argue that this synergy will increase, not only within our own group, but also among groups as the Internet matures, and that an anatomic knowledge base will be a useful means for fostering these interactions.
机译:医学成像领域是解剖学。因此,解剖学知识应成为组织和分析图像的合理基础。华盛顿大学数字解剖学家计划的目标包括开发基于解剖的软件框架,用于组织,分析,可视化和利用生物医学信息。该框架基于空间和符号解剖知识的表示,并在分布式体系结构中实现,在该体系结构中,Internet上的多个客户端程序用于更新和访问扩展的解剖信息资源集。该框架的开发受到几种实际应用的推动,包括符号解剖推理,基于知识的图像分割,解剖信息检索和功能性大脑映射。由于这些领域中的每一个都涉及许多困难的图像处理问题,因此我们的研究策略是一种进化的策略,其中应用程序在某种程度上是独立开发的,并且使用网络作为基础,部分解决方案以零碎的方式集成在一起。这种方法假定交互组件的网络可以协同工作,以解决比任何一个单独解决的问题都大的问题。描述了各个项目以及评估,这些评估表明各个组件正在解决其设计的问题,并开始以协同的方式进行交互。我们认为,随着互联网的成熟,这种协同作用不仅会在我们自己的小组内部,而且也会在小组之间增强,并且解剖知识库将是促进这些相互作用的有用手段。

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