Bueno Gloria, Déniz Oscar, Salido Jesús, Rojo Marcial García
Engineering School, Universidad de Castilla-La Mancha, Ciudad Real, Spain.
Folia Histochem Cytobiol. 2009;47(4):691-7. doi: 10.2478/v10042-009-0116-x.
Grid technology has enabled the clustering and the efficient and secure access to and interaction among a wide variety of geographically distributed resources such as: supercomputers, storage systems, data sources, instruments and special devices and services. Their main applications include large-scale computational and data intensive problems in science and engineering. General grid structures and methodologies for both software and hardware in image analysis for virtual tissue-based diagnosis has been considered in this paper. This methods are focus on the user level middleware. The article describes the distributed programming system developed by the authors for virtual slide analysis in diagnostic pathology. The system supports different image analysis operations commonly done in anatomical pathology and it takes into account secured aspects and specialized infrastructures with high level services designed to meet application requirements. Grids are likely to have a deep impact on health related applications, and therefore they seem to be suitable for tissue-based diagnosis too. The implemented system is a joint application that mixes both Web and Grid Service Architecture around a distributed architecture for image processing. It has shown to be a successful solution to analyze a big and heterogeneous group of histological images under architecture of massively parallel processors using message passing and non-shared memory.
网格技术实现了对各种地理上分散的资源进行集群化以及高效、安全的访问与交互,这些资源包括:超级计算机、存储系统、数据源、仪器、特殊设备及服务。其主要应用包括科学与工程领域中大规模的计算和数据密集型问题。本文探讨了基于虚拟组织诊断的图像分析中软件和硬件的通用网格结构及方法。这些方法聚焦于用户级中间件。文章描述了作者为诊断病理学中的虚拟玻片分析所开发的分布式编程系统。该系统支持解剖病理学中常见的不同图像分析操作,同时考虑了安全方面以及具有高级服务的专门基础设施,旨在满足应用需求。网格可能会对健康相关应用产生深远影响,因此它们似乎也适用于基于组织的诊断。所实现的系统是一个联合应用,围绕用于图像处理的分布式架构混合了Web和网格服务架构。在大规模并行处理器架构下,使用消息传递和非共享内存对大量异构组织学图像进行分析时,它已被证明是一个成功的解决方案。