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Viewport: An object-oriented approach to integrate workstation software for tile and stack mode display

机译:视口:一种面向对象的方法集成了用于平铺和堆栈模式显示的工作站软件

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摘要

Diagnostic workstation design has migrated towards display presentation in one of two modes: tiled images or stacked images. It is our impression that the workstation setup or configuration in each of these two modes is rather distinct. We sought to establish a commonality to simplify software design, and to enable a single descriptor method to facilitate folder manager development of “hanging” protocols. All current workstation designs use a combination of “off-screen” and “on-screen” memory whether or not they use a dedicated display subsystem, or merely a video board. Most diagnostic workstations also have two or more monitors. Our central concept is that of a “logical” viewport that can be smaller than, the same size as, or larger than a single monitor. Each port “views” an image data sequence loaded into offscreen memory. Each viewport can display one or more images in sequence in a one-on-one or traditionally tiled presentation. Viewports can be assigned to the available monitor “real estate” in any manner that fits. For example, a single sequence computed tomography (CT) study could be displayed across all monitors in a tiled appearance by assigning a single large viewport to the monitors. At the other extreme, a multisequence magnetic resonance (MR) study could be compared with a similar previous study by assigning four viewports to each monitor, single image display per viewport, and assigning four of the sequences of the current study to the left monitor viewports, and four of the earlier study to the right monitor viewports. Ergonomic controls activate scrolling through the off-screen image sequence data. Workstation folder manager hanging protocols could then specify viewports, number of images per viewport, and the automatic assignment of appropriately named sequences of current and previous studies to the viewports on a radiologist-specific basis. Furthermore, software development is simplified by common base objects and methods of the tile and stack modes. Prototype workstation display software and folder manager protocol implementation will be described and demonstrated.
机译:诊断工作站的设计已朝着以下两种模式之一的显示方式迁移:平铺图像或堆叠图像。我们的印象是,这两种模式中的每种模式下的工作站设置或配置都非常不同。我们试图建立一种通用性来简化软件设计,并启用一种描述符方法来促进文件夹管理器开发“挂起”协议。当前的所有工作站设计都使用“屏幕外”和“屏幕上”内存的组合,而不管它们是否使用专用的显示子系统,还是仅使用视频板。大多数诊断工作站还具有两个或多个监视器。我们的中心概念是“逻辑”视口,它可以小于,等于或大于单个监视器。每个端口“查看”加载到屏幕外存储器的图像数据序列。每个视口可以一对一或按传统方式平铺显示顺序显示一个或多个图像。视口可以按照任何合适的方式分配给可用的监视器“不动产”。例如,通过为监视器分配单个大视口,可以在所有监视器上以平铺外观显示单个序列计算机断层扫描(CT)研究。在另一个极端,可以将多序列磁共振(MR)研究与以前的类似研究进行比较,方法是为每个监视器分配四个视口,每个视口显示单个图像,并将当前研究的四个序列分配给左监视器视口,以及较早的研究中的4个在正确的监视器视口中。符合人体工程学的控件可激活屏幕外图像序列数据的滚动。然后,工作站文件夹管理器挂起协议可以指定视口,每个视口的图像数量,并在放射线医师特定的基础上自动将适当命名的当前和先前研究序列分配给视口。此外,通过平铺和堆栈模式的通用基础对象和方法简化了软件开发。将描述和演示原型工作站显示软件和文件夹管理器协议的实现。

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