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Título

Data from: Detection of tephra layers in Antarctic sediment cores with hyperspectral imaging

AutorAymerich, Ismael F. CSIC; Oliva, Marc; Giralt, Santiago CSIC ORCID ; Martín-Herrero, Julio
Palabras claveSOM
Self-Organizing Maps
Hyperspectral
Tephrochronology
Automatic
Tephra
Volcanic
Sediment
Core
Fecha de publicación28-dic-2016
EditorDryad
CitaciónAymerich, Ismael F.; Oliva, Marc; Giralt, Santiago; Martín-Herrero, Julio (2016): Data from: Detection of tephra layers in Antarctic sediment cores with hyperspectral imaging [Dataset]; Dryad; Version 1; https://doi.org/10.5061/dryad.v2st1
ResumenTephrochronology uses recognizable volcanic ash layers (from airborne pyroclastic deposits, or tephras) in geological strata to set unique time references for paleoenvironmental events across wide geographic areas. This involves the detection of tephra layers which sometimes are not evident to the naked eye, including the so-called cryptotephras. Tests that are expensive, time-consuming, and/or destructive are often required. Destructive testing for tephra layers of cores from difficult regions, such as Antarctica, which are useful sources of other kinds of information beyond tephras, is always undesirable. Here we propose hyperspectral imaging of cores, Self-Organizing Map (SOM) clustering of the preprocessed spectral signatures, and spatial analysis of the classified images as a convenient, fast, non-destructive method for tephra detection. We test the method in five sediment cores from three Antarctic lakes, and show its potential for detection of tephras and cryptotephras.
DescripciónData_IsmaelAymerich_PLOSONE_2015 Excel file containing hyperspectral signatures of tephra and No-tephra samples extracted from an Antarctic sediment core. Tephra signatures are labelled 1, while No-tephra spectra are labelled 0.
Versión del editorhttps://doi.org/10.5061/dryad.v2st1
URIhttp://hdl.handle.net/10261/281800
DOI10.5061/dryad.v2st1
ReferenciasAymerich, Ismael F.; Oliva, Marc; Giralt, Santiago; Martín-Herrero, Julio (2016): Detection of tephra layers in Antarctic sediment cores with hyperspectral imaging; http://dx.doi.org/10.1371/journal.pone.0146578. http://hdl.handle.net/10261/129869
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