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知识与实例映射:用于对材料异类数据进行预先设计的互操作性的架构。

Knowledge and Instance Mapping: architecture for premeditated interoperability of disparate data for materials.

机构信息

Center for the Environmental Implications of Nano Technology (CEINT), Durham, USA.

Civil & Environmental Engineering, Duke University, Durham, North Carolina, 2770y8, USA.

出版信息

Sci Data. 2024 Feb 6;11(1):173. doi: 10.1038/s41597-024-03006-8.

Abstract

Predicting and elucidating the impacts of materials on human health and the environment is an unending task that has taken on special significance in the context of nanomaterials research over the last two decades. The properties of materials in environmental and physiological media are dynamic, reflecting the complex interactions between materials and these media. This dynamic behavior requires special consideration in the design of databases and data curation that allow for subsequent comparability and interrogation of the data from potentially diverse sources. We present two data processing methods that can be integrated into the experimental process to encourage pre-mediated interoperability of disparate material data: Knowledge Mapping and Instance Mapping. Originally developed as a framework for the NanoInformatics Knowledge Commons (NIKC) database, this architecture and associated methods can be used independently of the NIKC and applied across multiple subfields of nanotechnology and material science.

摘要

预测和阐明材料对人类健康和环境的影响是一项永无止境的任务,在过去二十年的纳米材料研究中,这项任务具有特殊的意义。材料在环境和生理介质中的性质是动态的,反映了材料与这些介质之间的复杂相互作用。这种动态行为需要在数据库的设计和数据管理中特别考虑,以允许随后对来自潜在不同来源的数据进行比较和查询。我们提出了两种数据处理方法,可以集成到实验过程中,以鼓励不同材料数据的预先协调的互操作性:知识图谱和实例映射。该架构和相关方法最初是作为 NanoInformatics Knowledge Commons (NIKC) 数据库的框架开发的,可独立于 NIKC 使用,并应用于纳米技术和材料科学的多个子领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9b1/10847415/0ede1b051482/41597_2024_3006_Fig1_HTML.jpg

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