用于医学成像的网格化PSE:在MedIGrid上的体验

V. Boccia, M. Guarracino
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引用次数: 27

摘要

设计能够有效利用网格计算环境的应用程序代码的关键问题是处理和管理所有软件组件的复杂性,对于医学成像应用程序更是如此。我们关注的是为先进和网格计算环境开发医学成像PSE。具体来说,MedIGrid是一个用于管理、处理和可视化生物医学图像的分布式应用程序,它集成了一组软件和硬件组件,或者更具体地说,是一组对核医生有用的网格协作应用程序。它是致力于设计和部署新的层析重建算法技术的计算机科学家、分布式和并行体系结构领域的计算机科学家和参与核医学的医生的相互作用的结果。我们将描述MedIGrid的通用架构,以及改进和增强,主要是关于GUI (Portal)的语义能力(它的语言和实现),以及用于图像重建的并行计算内核的监视和迁移的整个阶段,主要基于考虑历史性能和特别开发的性能模型的性能合同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A grid enabled PSE for medical imaging: experiences on MedIGrid
A key issue in designing applications codes which are able to effectively take advantage of grid computing environments is to deal and manage all the software components complexity, this is even more true for medical imaging applications. We are concerned with development of a medical imaging PSE for advanced and grid computing environments. Specifically, MedIGrid is a distributed application for the management, processing and visualization of biomedical images that integrates a set of software and hardware components, or, more specifically, a set of grid collaborative applications useful to nuclear doctors. It results from the interaction of computing scientists devoted to the design and deployment of new tomographic reconstruction algorithms techniques, computer scientists researchers in the field of distributed and parallel architectures and physicians involved in nuclear medicine. We'll describe MedIGrid general architecture, as well as improvements and enhancements, essentially regarding the semantic power of the GUI (the Portal) (its language and its realization), and the entire phase of monitoring and migration of the parallel computational kernel for images reconstruction, mainly based on a performance contract inked taking into account historical performances and an ad hoc developed performance model.
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