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火山岩样本库的指南和元数据模型。

Guidelines and metadata model for a repository of volcanic samples.

作者信息

Corsaro Rosa Anna, D'Oriano Claudia, Di Muro Andrea, Geyer Adelina, Gurioli Lucia, Pappalardo Lucia, Pennisi Maddalena, Pompilio Massimo, Principe Claudia, Re Giuseppe

机构信息

Istituto Nazionale di Geofisica e Vulcanologia, Sezione di Catania, Osservatorio Etneo, Catania, Italy.

Istituto Nazionale di Geofisica e Vulcanologia, Sezione di Pisa, Pisa, Italy.

出版信息

Bull Volcanol. 2025;87(5):32. doi: 10.1007/s00445-025-01816-1. Epub 2025 Apr 9.

Abstract

The volcanological community manages heterogeneous types of data acquired during research projects and monitoring activities of volcanoes. These data consist of both continuous and discrete measurements and observations, which are carried out by ground-based networks and remote sensing instruments, or during field surveys and laboratory analyses. Many types of volcanological research are largely based on the accurate sampling of rocks erupted during past and ongoing volcanic activity. Each sample represents a "physical object" which should be identified and archived before part of it is removed for analytical purposes. In this context, we recommend assigning the collected samples unique and persistent identifiers, such as the International Generic Sample Number (IGSN). However, although the IGSN allows recording the most essential information of the collected samples (e.g. geographic location, sampling method, and collector), the predefined metadata fields are not exhaustive for volcanic samples, which require additional information such as type and timing of the eruptive event, sample temperature, and texture. Here we design the guidelines necessary to facilitate communication between and search of multiple sample repositories and databases run by disparate institutions. To this aim, we build a metadata model, which integrate the IGSN metadata with supplementary information necessary for the monitoring and research activities carried out by the volcanological community. The long-term curation of collected materials is an important investment for the future. Indeed, these collections are a resource for the production of volcanological data, they reduce the need for repeated sampling, they preserve samples that can no longer be collected, and they allow repeat analyses to be made. The primary aim of this work, based on discussion within the EUROVOLC project, is to provide the basic information for populating a relational database structure in the future for the description of different volcanic samples, physically located in different physical repositories and institutions, in order to facilitate future sharing between different groups of scientists and more complete volcanological studies, by means of the proposed metadata structure.

摘要

火山学界管理着在火山研究项目和监测活动中获取的各类不同数据。这些数据包括连续和离散的测量及观测结果,由地面网络、遥感仪器进行,或在实地调查和实验室分析过程中获得。许多类型的火山学研究很大程度上基于对过去和正在进行的火山活动中喷发岩石的精确采样。每个样本代表一个“物理对象”,在为分析目的取出部分样本之前,应进行识别和存档。在此背景下,我们建议为所采集的样本分配唯一且持久的标识符,例如国际通用样本编号(IGSN)。然而,尽管IGSN允许记录所采集样本的最基本信息(如地理位置、采样方法和采集者),但预定义的元数据字段对于火山样本并不详尽,火山样本还需要额外信息,如喷发事件的类型和时间、样本温度及质地。在此,我们设计了必要的指南,以促进不同机构运营的多个样本库和数据库之间的交流与搜索。为此,我们构建了一个元数据模型,将IGSN元数据与火山学界监测和研究活动所需的补充信息整合在一起。对所采集材料的长期管理是对未来的一项重要投资。实际上,这些藏品是生成火山学数据的资源,它们减少了重复采样的需求,保存了无法再采集的样本,并允许进行重复分析。基于EUROVOLC项目内的讨论,这项工作的主要目的是提供基本信息,以便未来填充关系数据库结构,用于描述位于不同物理存储库和机构中的不同火山样本,从而通过所提议的元数据结构促进不同科学家群体之间的未来共享以及更全面的火山学研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46b9/11982162/56663766f6bf/445_2025_1816_Fig1_HTML.jpg

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