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Graphical style sheets: Declarative, constraint-based display of biomedical domain graphics.

机译:图形样式表:基于声明的基于约束的生物医学领域图形显示。

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Biomedical professionals use data graphics widely in research, teaching, and patient care. There are families of specialized data graphics, which we term domain graphics, that incorporate domain-specific layout and drawing conventions to display the unique characteristics of data from a particular field of study. Examples of biomedical domain graphics include pedigree trees, clinical flowcharts, and secondary-structure diagrams. Although domain graphics are used widely in the biomedical literature, they rarely appear in user interfaces to biomedical information systems. The principal challenges to building such user interfaces lie in identifying the characteristics that make a particular family of domain graphics well-suited domain data display, and building systems that automatically generate graphics that share these characteristics. We describe a method of modeling families of domain-specific data graphics that facilitates the use of such domain graphics as visual metaphors in biomedical user interfaces.; In this dissertation, we hypothesize that the design characteristics shared by a family of data graphics can be represented as declarative, knowledge-based graphical style sheets that a general-purpose visualization system can use to generate data graphics automatically. Graphical style sheets define the layout and drawing conventions shared by members of a particular family of data graphics. We describe a conceptual framework for visualizing data using (1) a point- and path-based representation of graphics, (2) a constraint-based representation of graphical relationships, (3) a frame-based representation of data and (4) graphical style sheets that link data objects to graphical objects. We have created PALLADIO, a scripting language and visualization system for describing graphical style sheets and for visualizing data according to the design preferences declared in these graphical style sheets.; PALLADIO implements programmatically the design knowledge needed to generate domain graphics automatically. We evaluated our framework by experimentally determining the range of domain graphics that could be encoded as graphical style sheets, the extent to which these style sheets could be used to automatically generate domain graphics, and the extent to which they could be used to evaluate other, manually-generated domain graphics. We show that a system based on our framework can represent and generate a range of useful domain-specific information graphics, and may serve as a useful foundation for general-purpose information visualization systems.
机译:生物医学专业人员在研究,教学和患者护理中广泛使用数据图形。有专门的数据图形系列,我们称之为 domain graphics ,它们结合了特定于领域的布局和绘图约定,以显示来自特定研究领域的数据的独特特征。生物医学领域图形的示例包括血统树,临床流程图和二级结构图。尽管领域图形在生物医学文献中得到了广泛使用,但它们很少出现在生物医学信息系统的用户界面中。构建此类用户界面的主要挑战在于识别使特定域图形家族非常适合域数据显示的特征,以及构建自动生成共享这些特征的图形的系统。我们描述了一种建模领域特定数据图形族的方法,该方法有助于在生物医学用户界面中使用诸如视觉隐喻之类的领域图形。在本文中,我们假设一个数据图形族共享的设计特征可以表示为基于声明的,基于知识的图形样式表,通用可视化系统可以使用该样式表自动生成数据图形。图形样式表定义特定数据图形系列成员共享的布局和绘图约定。我们描述了使用(1)基于点和路径的图形表示,(2)基于约束的图形关系表示,(3)基于帧的数据表示和(4)图形化的数据可视化的概念框架将数据对象链接到图形对象的样式表。我们已经创建了P ALLADIO ,这是一种脚本语言和可视化系统,用于描述图形样式表并根据这些图形样式表中声明的设计偏好来可视化数据。 P ALLADIO 以编程方式实现自动生成域图形所需的设计知识。我们通过实验确定可以编码为图形样式表的领域图形的范围,这些样式表可用于自动生成领域图形的程度以及可用于评估其他样式的程度来评估我们的框架,手动生成的域图形。我们表明,基于我们的框架的系统可以表示并生成一系列有用的特定于域的信息图形,并且可以用作通用信息可视化系统的有用基础。

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