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Clinical Image Processing Engine

机译:临床图像处理引擎

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Our group provides clinical image processing services to various institutes at NIH. We develop or adapt image processing programs for a variety of applications. However, each program requires a human operator to select a specific set of images and execute the program, as well as store the results appropriately for later use. To improve efficiency, we design a parallelized clinical image processing engine (CIPE) to streamline and parallelize our service. The engine takes DICOM images from a PACS server, sorts and distributes the images to different applications, multithreads the execution of applications, and collects results from the applications. The engine consists of four modules: a listener, a router, a job manager and a data manager. A template filter in XML format is defined to specify the image specification for each application. A MySQL database is created to store and manage the incoming DICOM images and application results. The engine achieves two important goals: reduce the amount of time and manpower required to process medical images, and reduce the turnaround time for responding. We tested our engine on three different applications with 12 datasets and demonstrated that the engine improved the efficiency dramatically.
机译:我们的小组为NIH的各种研究所提供临床图像处理服务。我们为各种应用程序开发或调整图像处理程序。然而,每个程序都需要人工操作员选择特定的图像集并执行程序,并适当地存储结果以供以后使用。为了提高效率,我们设计并行化的临床图像处理引擎(Cipe)以简化并并行化我们的服务。该引擎从PACS服务器中取DICOM图像,对不同的应用程序进行排序和分发图像,多线程执行应用程序,并从应用程序中收集结果。该发动机由四个模块组成:侦听器,路由器,作业管理器和数据管理器。定义XML格式的模板过滤器以指定每个应用程序的图像规范。创建MySQL数据库以存储和管理传入的DICOM图像和应用程序结果。该发动机实现了两个重要的目标:减少处理医学图像所需的时间和人力,并减少回应的周转时间。我们在具有12个数据集的三个不同应用中测试了我们的发动机,并证明了发动机急剧提高了效率。

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