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Original Articles

On the potential of QuickBird data for archaeological prospection

&
Pages 3607-3614 | Received 03 Jul 2005, Accepted 30 Aug 2005, Published online: 22 Feb 2007

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Read on this site (5)

Nicodemo Abate, D. Roubis, F. Sogliani, V. Vitale, M. Sileo, P. Arzu, R. Lasaponara & N. Masini. (2023) Integrated use of GIS and remote sensing techniques for landscape-scale archaeological analysis: the case study of Metaponto, Basilicata, Italy. Exploration Geophysics 0:0, pages 1-12.
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V. De Laet, E. Paulissen, K. Meuleman & M. Waelkens. (2009) Effects of image characteristics on the identification and extraction of archaeological features from Ikonos-2 and Quickbird-2 imagery: case study Sagalassos (southwest Turkey). International Journal of Remote Sensing 30:21, pages 5655-5668.
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Shawn A. Ross, Adela Sobotkova & Gert-Jan Burgers. (2009) Remote Sensing and Archaeological Prospection in Apulia, Italy. Journal of Field Archaeology 34:4, pages 423-437.
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Articles from other publishers (30)

N Abate, D Roubis, V Vitale, M Sileo, F Sogliani, N Masini & R Lasaponara. (2022) Integrated use of multi-temporal multi-sensor and multiscale Remote Sensing data for the understanding of archaeological contexts: the case study of Metaponto, Basilicata.. Journal of Physics: Conference Series 2204:1, pages 012020.
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Nicodemo Abate, Alessia Frisetti, Federico Marazzi, Nicola Masini & Rosa Lasaponara. (2021) Multitemporal–Multispectral UAS Surveys for Archaeological Research: The Case Study of San Vincenzo Al Volturno (Molise, Italy). Remote Sensing 13:14, pages 2719.
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Iulia Dana Negula, Cristian Moise, Andi Mihai Lazăr, Nicolae Cătălin Rișcuța, Cătălin Cristescu, Andreea Luminița Dedulescu, Cristina Elena Mihalache & Alexandru Badea. (2020) Satellite Remote Sensing for the Analysis of the Micia and Germisara Archaeological Sites. Remote Sensing 12:12, pages 2003.
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Konstantinos G. Nikolakopoulos, Konstantina Soura, Ioannis K. Koukouvelas & Nikolaos G. Argyropoulos. (2017) UAV vs classical aerial photogrammetry for archaeological studies. Journal of Archaeological Science: Reports 14, pages 758-773.
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Stephanie Rost, David K. Wright & M. Kyle Woodson. (2015) Application of remote sensing technologies in detecting prehistoric canals of the Hohokam Period (a.d. 450–1450) in the Middle Gila River Valley, Arizona. Archaeological and Anthropological Sciences 9:3, pages 295-315.
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Francesco Gabellone, Antonio Lanorte, Nicola Masini & Rosa Lasaponara. (2017) From remote sensing to a serious game: Digital reconstruction of an abandoned medieval village in Southern Italy. Journal of Cultural Heritage 23, pages 63-70.
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Yaping Xu, Lei Wang, Chengliang Liu & Cuiling Liu. (2017) Identifying Unlawful Constructions in Cultural Relic Sites Based on Subpixel Mapping—a Case Study in Mangshan Tombs, China. AIMS Geosciences 3:2, pages 268-283.
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Francisco-Javier Mesas-Carrascosa, María Notario García, Jose Meroño de Larriva & Alfonso García-Ferrer. (2016) An Analysis of the Influence of Flight Parameters in the Generation of Unmanned Aerial Vehicle (UAV) Orthomosaicks to Survey Archaeological Areas. Sensors 16:11, pages 1838.
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Christopher Sevara, Michael Pregesbauer, Michael Doneus, Geert Verhoeven & Immo Trinks. (2016) Pixel versus object — A comparison of strategies for the semi-automated mapping of archaeological features using airborne laser scanning data. Journal of Archaeological Science: Reports 5, pages 485-498.
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Karim Sadr. (2016) The Impact of Coder Reliability on Reconstructing Archaeological Settlement Patterns from Satellite Imagery: a Case Study from South Africa. Archaeological Prospection 23:1, pages 45-54.
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Geert Julien Verhoeven. (2011) Near-Infrared Aerial Crop Mark Archaeology: From its Historical Use to Current Digital Implementations. Journal of Archaeological Method and Theory 19:1, pages 132-160.
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Gabriele Bitelli. 2012. Satellite Remote Sensing. Satellite Remote Sensing 113 127 .
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Geert Verhoeven & Michael Doneus. (2011) Balancing on the Borderline – a Low‐cost Approach to Visualize the Red‐edge Shift for the Benefit of Aerial Archaeology. Archaeological Prospection 18:4, pages 267-278.
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Rosa Lasaponara, Nicola Masini, Enzo Rizzo & Giuseppe Orefici. (2011) New discoveries in the Piramide Naranjada in Cahuachi (Peru) using satellite, Ground Probing Radar and magnetic investigations. Journal of Archaeological Science 38:9, pages 2031-2039.
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Dimitris Kaimaris, Olga Georgoula, Petros Patias & Eustratios Stylianidis. (2011) Comparative analysis on the archaeological content of imagery from Google Earth. Journal of Cultural Heritage 12:3, pages 263-269.
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Fabio Remondino. (2011) Heritage Recording and 3D Modeling with Photogrammetry and 3D Scanning. Remote Sensing 3:6, pages 1104-1138.
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Jean-Paul Deroin, Florian Téreygeol & Jürgen Heckes. (2011) Evaluation of very high to medium resolution multispectral satellite imagery for geoarchaeology in arid regions – Case study from Jabali, Yemen. Journal of Archaeological Science 38:1, pages 101-114.
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Rosa Lasaponara & Nicola Masini. 2011. Computational Science and Its Applications - ICCSA 2011. Computational Science and Its Applications - ICCSA 2011 392 406 .
R. Coluzzi, A. Lanorte & R. Lasaponara. (2010) On the LiDAR contribution for landscape archaeology and palaeoenvironmental studies: the case study of Bosco dell'Incoronata (Southern Italy). Advances in Geosciences 24, pages 125-132.
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Rosa Lasaponara & Nicola Masini. (2009) Full-waveform Airborne Laser Scanning for the detection of medieval archaeological microtopographic relief. Journal of Cultural Heritage 10, pages e78-e82.
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Marcello Ciminale, Danilo Gallo, Rosa Lasaponara & Nicola Masini. (2009) A multiscale approach for reconstructing archaeological landscapes: Applications in Northern Apulia (Italy). Archaeological Prospection 16:3, pages 143-153.
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Dimitrios Alexakis, Apostolos Sarris, Theodoros Astaras & Konstantinos Albanakis. (2009) Detection of Neolithic Settlements in Thessaly (Greece) Through Multispectral and Hyperspectral Satellite Imagery. Sensors 9:2, pages 1167-1187.
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N. Masini, E. Rizzo, R. Lasaponara & G. Orefici. (2008) Integrated remote sensing techniques for the detection of buried archaeological adobe structures: preliminary results in Cahuachi (Peru). Advances in Geosciences 19, pages 75-82.
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Nicola Masini & Rosa Lasaponara. (2007) Investigating the spectral capability of QuickBird data to detect archaeological remains buried under vegetated and not vegetated areas. Journal of Cultural Heritage 8:1, pages 53-60.
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R. Lasaponara & N. Masini. (2006) Identification of archaeological buried remains based on the normalized difference vegetation index (NDVI) from Quickbird satellite data. IEEE Geoscience and Remote Sensing Letters 3:3, pages 325-328.
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