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Automating object-oriented integration and visualization of multidisciplinary biomedical data in radiology workflow: Compartmental PACS model

机译:放射学工作流程中多学科生物医学数据的自动化面向对象的集成和可视化:隔室PACS模型

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This paper is aimed to present a novel compartmental PACS model for the automatic object-oriented integration and visualization of heterogeneous data for the multidisciplinary biomedical studies in the midst of the imaging services in radiology department. The generic PACS is conceptually partitioned into two compartments: service and integration. The service compartment supports the routine imaging service by connecting the imaging modalities to the web client workstations through a single fault-tolerant hardware. The integration compartment is synthesized by open source and open standard software tools to perform the long-term archiving of imaging cases and to integrate the images with the related data from other clinical disciplines. The prototype of the compartmental PACS model has been successfully implemented in the Department of Health Technology and Informatics (HTI) at the Hong Kong Polytechnic University (PolyU). Multi-disciplinary study on a cardiovascular case is considered as an example in this paper to demonstrate the seamless integration and web-based visualization of heterogeneous data from radiology, ophthalmology, cardiology and hema-tology. The implementation of the compartmental PACS model demonstrates a deliberative system design for allocating mission-critical components at the clinical frontline of imaging services and long-term archiving components at the backend. The integrative feature of object-oriented long-term archive addresses the comprehensive needs of patient-centered multidisciplinary biomedical studies.
机译:本文旨在为放射科成像服务中的多学科生物医学研究提供一种新颖的隔室PACS模型,用于异物数据的自动面向对象的集成和可视化。通用PACS在概念上分为两个部分:服务和集成。该服务舱通过单个容错硬件将映像模态连接到Web客户端工作站,从而支持常规映像服务。集成部分由开源和开放标准软件工具合成,以执行成像病例的长期归档,并将图像与其他临床学科的相关数据集成。间隔式PACS模型的原型已在香港理工大学(PolyU)的卫生技术与信息学系(HTI)成功实施。本文以心血管疾病的多学科研究为例,以展示来自放射学,眼科,心脏病学和血液学的异类数据的无缝集成和基于Web的可视化。隔离式PACS模型的实现演示了一种协商系统设计,该系统用于在成像服务的临床前线分配关键任务组件,并在后端分配长期归档组件。面向对象的长期档案的综合功能可满足以患者为中心的多学科生物医学研究的全面需求。

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