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Exploring the Potential of Using Multiple E-science Infrastructures with Emerging Open Standards-Based E-health Research Tools

机译:探索基于新兴开放标准的电子卫生研究工具使用多种电子科学基础设施的潜力

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E-health makes use of information and communication methods and the latest e-research tools to support the understanding of body functions. E-scientists in this field take already advantage of one single infrastructure to perform computationally-intensive investigations of the human body that tend to consider each of the constituent parts separately without taking into account the multiple important interactions between them. But these important interactions imply an increasing complexity of applications that embrace multiple physical models (i.e. multi-physics) and consider a larger range of scales (i.e. multi-scale) thus creating a steadily growing demand for interoperable infrastructures that allow for new innovative application types of jointly using different infrastructures for one application. But interoperable infrastructures are still not seamlessly provided and we argue that this is due to the absence of a realistically implementable infrastructure interoperability reference model that is based on lessons learned from e-science usage. Therefore, the goal of this paper is to explore the potential of using multiple infrastructures for one scientific goal with a particular focus on e-health. Since e-scientists gain more interest in using multiple infrastructures there is a clear demand for interoperability between them to enable a use with one e-research tool. The paper highlights work in the context of an e-Health blood flow application while the reference model is applicable to other e-science applications as well.
机译:电子保健利用信息和通信方法以及最新的电子研究工具来支持对身体功能的理解。该领域的电子科学家已经利用一种单一的基础结构对人体进行了计算密集型的研究,这些研究倾向于将各个组成部分分开考虑,而无需考虑它们之间的多个重要相互作用。但是,这些重要的交互作用意味着包含多个物理模型(即多物理场)并考虑更大范围的尺度(即多尺度)的应用程序的复杂性不断提高,从而对可互操作的基础结构提出了稳定增长的需求,这些基础结构允许使用新的创新应用程序类型一个应用程序联合使用不同的基础架构的过程。但是,仍然无法无缝地提供可互操作的基础结构,我们认为这是由于缺乏基于从电子科学使用中学到的经验的,切实可行的基础设施互操作性参考模型。因此,本文的目的是探索将多种基础设施用于一项科学目标的潜力,尤其是对电子卫生的关注。由于电子科学家对使用多种基础架构越来越感兴趣,因此人们强烈要求它们之间具有互操作性,以便能够使用一种电子研究工具。本文重点介绍了电子卫生保健血流应用程序中的工作,而参考模型也适用于其他电子科学应用程序。

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