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UWGSP6: a diagnostic radiology workstation of the future

机译:UWGSP6:未来的放射诊断工作站

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Abstract: v. of Washington's Image Computing Systems Lab. (ICSL) has been involved in research into the development of a series of PACS workstations since the middle 1980's. The most recent research, a joint UW-IBM project, attempted to create a diagnostic radiology workstation using an IBM RISC System 6000 (RS6000) computer workstation and the X-Window system. While the results are encouraging, there are inherent limitations in the workstation hardware which prevent it from providing an acceptable level of functionality for diagnostic radiology. Realizing the RS6000 workstation's limitations, a parallel effort was initiated to design a workstation, UWGSP6 (Univ. of Washington Graphics System Processor #6), that provides the required functionality. This paper documents the design of UWGSP6, which not only addresses the requirements for a diagnostic radiology workstation in terms of display resolution, response time, etc., but also includes the processing performance necessary to support key functions needed in the implementation of algorithms for computer-aided diagnosis. The paper includes a description of the workstation architecture, and specifically its image processing subsystem. Verification of the design through hardware simulation is then discussed, and finally, performance of selected algorithms based on detailed simulation is provided.!31
机译:摘要:诉华盛顿的图像计算系统实验室。 (ICSL)自1980年代中期以来一直从事一系列PACS工作站的开发研究。最新的研究是UW-IBM的一个联合项目,试图使用IBM RISC System 6000(RS6000)计算机工作站和X-Window系统创建放射诊断工作站。尽管结果令人鼓舞,但工作站硬件存在固有的局限性,无法为其提供诊断放射学可接受的功能水平。意识到RS6000工作站的局限性,开始了并行工作,以设计提供所需功能的工作站UWGSP6(华盛顿大学图形系统处理器#6)。本文记录了UWGSP6的设计,它不仅解决了放射诊断工作站在显示分辨率,响应时间等方面的要求,而且还包括支持计算机算法实现所需的关键功能所需的处理性能。辅助诊断。本文包括对工作站体系结构的描述,特别是其图像处理子系统的描述。然后讨论了通过硬件仿真对设计进行的验证,最后提供了基于详细仿真的所选算法的性能。!​​31

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