Vegetation indices and field spectroradiometric measurements for validation of buried architectural remains: verification under area surveyed with geophysical campaigns
Author:
Publisher
SPIE-Intl Soc Optical Eng
Subject
General Earth and Planetary Sciences
Reference41 articles.
1. Investigating the spectral capability of QuickBird data to detect archaeological remains buried under vegetated and not vegetated areas
2. The use of ASTER satellite imagery in archaeological contexts
3. S. A. Aqdus, W. S. Hanson, and J. Drummond , “A comparative study for finding archaeological crop marks using airborne hyperspectral, multispectral and digital photographic data,” InProceedings of the 2007, Annual Conference of the Remote Sensing and Photogrammetry Society, Newcastle University (2009).
4. Detection of Neolithic Settlements in Thessaly (Greece) Through Multispectral and Hyperspectral Satellite Imagery
5. Specific spectral bands for different land cover contexts to improve the efficiency of remote sensing archaeological prospection: The Arpi case study
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