Register      Login
Exploration Geophysics Exploration Geophysics Society
Journal of the Australian Society of Exploration Geophysicists

Articles citing this paper

Detecting buried human remains using near-surface geophysical instruments

K. Powell
35(1) pp.88 - 92


49 articles found in Crossref database.

Locating places for repatriated burial: a case study from Ngarrindjeriruwe, South Australia
Wallis Lynley A., Moffat Ian, Trevorrow George, Massey Toni
Antiquity. 2008 82(317). p.750
The use of geoscience methods for terrestrial forensic searches
Pringle J.K., Ruffell A., Jervis J.R., Donnelly L., McKinley J., Hansen J., Morgan R., Pirrie D., Harrison M.
Earth-Science Reviews. 2012 114(1-2). p.108
Determining geophysical responses from burials in graveyards and cemeteries
Dick Henry C., Pringle Jamie K., Wisniewski Kristopher D., Goodwin Jon, van der Putten Robert, Evans Gethin T., Francis James D., Cassella John P., Hansen Jamie D.
GEOPHYSICS. 2017 82(6). p.B245
Monitoring of simulated clandestine graves of victims using UAVs, GPR, electrical tomography and conductivity over 4-8 years post-burial to aid forensic search investigators in Colombia, South America
Molina Carlos Martín, Wisniewski Kristopher D., Salamanca Andrés, Saumett Miguel, Rojas Carlo, Gómez Héctor, Baena Alejandra, Pringle Jamie K.
Forensic Science International. 2024 355 p.111919
Ground penetrating radar as a non-invasive tool to better understand the population dynamics of a fossorial species: mapping the warrens of southern hairy-nosed wombats (Lasiorhinus latifrons)
Swinbourne Michael J., Taggart David A., Sparrow Elisa, Hatch Michael, Ostendorf Bertram
Wildlife Research. 2015 42(8). p.678
The effectiveness of ground-penetrating radar surveys in the location of unmarked burial sites in modern cemeteries
Fiedler Sabine, Illich Bernhard, Berger Jochen, Graw Matthias
Journal of Applied Geophysics. 2009 68(3). p.380
The Search for “Fred”: An Unusual Vertical Burial Case,
Wisniewski Kristopher D., Cooper Nicholas, Heaton Vivienne, Hope Colin, Pirrie Duncan, Mitten Andrew J., Pringle Jamie K.
Journal of Forensic Sciences. 2019 64(5). p.1530
The use of magnetic susceptibility as a forensic search tool
Pringle Jamie K., Giubertoni Matteo, Cassidy Nigel J., Wisniewski Kristopher D., Hansen James D., Linford Neil T., Daniels Rebecca M.
Forensic Science International. 2015 246 p.31
Locating and characterizing burials using 3D ground-penetrating radar (GPR) and terrestrial laser scanning (TLS) at the historic Mueschke Cemetery, Houston, Texas
Aziz Azie S., Stewart Robert R., Green Susan L., Flores Janet B.
Journal of Archaeological Science: Reports. 2016 8 p.392
Surveying Batavia’s Graveyard: Geophysical controlled experiments and subsurface imaging of archaeological sites on an Indian Ocean coral island
Shragge Jeffrey, Lumley David, Issa Nader, Hoskin Tom, Paterson Alistair, Green Jeremy
GEOPHYSICS. 2017 82(4). p.B147
GPR and ERT detection and characterization of a mass burial, Spanish Civil War, Northern Spain
Rubio-Melendi David, Gonzalez-Quirós Andrés, Roberts Daniel, García García María del Carmen, Caunedo Domínguez Amaya, Pringle Jamie K., Fernández-Álvarez José-Paulino
Forensic Science International. 2018 287 p.e1
Mapping unmarked graves with Ground Penetrating Radar at the Walkerville Wesleyan Cemetery, Adelaide
Moffat Ian, Linsell John, Vella Anthea, Duke Belinda, Kowlessar Jarrad, Griffith John Gareth, Down Allison
Australian Archaeology. 2020 86(1). p.57
GPR and bulk ground resistivity surveys in graveyards: Locating unmarked burials in contrasting soil types
Hansen James D., Pringle Jamie K., Goodwin Jon
Forensic Science International. 2014 237 p.e14
Optimized electrical resistivity tomography investigation established in identifying pit tombs of Mogareb, a cemetery area in a Pre-Aksumite archaeological site of Seglamen, northern Ethiopia
Getaneh Assefa, Haile Tigistu
Measurement. 2018 129 p.558
The application of low-altitude near-infrared aerial photography for detecting clandestine burials using a UAV and low-cost unmodified digital camera
Evers Rykker, Masters Peter
Forensic Science International. 2018 289 p.408
Finite-difference time domain (FDTD) modeling of ground penetrating radar pulse energy for locating burial sites
Akinsunmade Akinniyi, Karczewski Jerzy, Mazurkiewicz Ewelina, Tomecka-Suchoń Sylwia
Acta Geophysica. 2019 67(6). p.1945
Monitoring of simulated clandestine graves of dismembered victims using UAVs, electrical tomography, and GPR over one year to aid investigations of human rights violations in Colombia, South America
Molina Carlos Martín, Wisniewski Kristopher, Heaton Vivienne, Pringle Jamie K., Avila Edier Fernando, Herrera Luis Alberto, Guerrero Jorge, Saumett Miguel, Echeverry Raúl, Duarte Mario, Baena Alejandra
Journal of Forensic Sciences. 2022 67(3). p.1060
Ground‐penetrating radar and burial practices in western Arnhem Land, Australia
Lowe Kelsey M., Wallis Lynley A., Pardoe Colin, Marwick Ben, Clarkson Chris, Manne Tiina, Smith Mike A., Fullagar Richard
Archaeology in Oceania. 2014 49(3). p.148
Preserving Holocaust history: Geophysical investigations at the Ponary (Paneriai) extermination site
McClymont Alastair F., Bauman Paul D., Freund Richard A., Seligman Jon, Jol Harry M., Reeder Philip, Bensimon Ken, Vengalis Rokas
GEOPHYSICS. 2022 87(1). p.WA15
Geophysical prospection for late Holocene burials in coastal environments: Possibilities and problems from a pilot study in South Australia
Moffat Ian, Wallis Lynley A., Hounslow Mark W., Niland Katrina, Domett Kate, Trevorrow George
Geoarchaeology. 2010 25(5). p.645
Monitoring controlled graves representing common burial scenarios with ground penetrating radar
Schultz John J., Martin Michael M.
Journal of Applied Geophysics. 2012 83 p.74
Geophysical Investigations at the Pulemelei Mound
Clark Geoffrey, De Biran Antoine
Archaeology in Oceania. 2007 42(1). p.1
Bone permittivity and its effect on using ground-penetrating radar
Schneider Blair B., Tsoflias Georgios, Steeples Don W., Mandel Rolfe, Hofman Jack
GEOPHYSICS. 2018 83(1). p.H1
Inorganic elemental analysis of decomposition fluids of an in situ animal burial
Dick Henry C., Pringle Jamie K.
Forensic Science International. 2018 289 p.130
Ground-penetrating radar surveys of late-19th and early-20th century cemeteries to identify unmarked graves in rural Idaho, USA
SEG Technical Program Expanded Abstracts 2018 (2018)
Bradford John H.
Ground penetrating radar survey of site 14DC320: Utilizing geophysical methods to protect Native American burials
SEG Technical Program Expanded Abstracts 2019 (2019)
Schneider B.B., Hoard R.J.
Discovery of a mass grave from the Spanish Civil War using Ground Penetrating Radar and forensic archaeology
Fernández-Álvarez José-Paulino, Rubio-Melendi David, Martínez-Velasco Antxoka, Pringle Jamie K., Aguilera Hector-David
Forensic Science International. 2016 267 p.e10
Long-term sequential monitoring of controlled graves representing common burial scenarios with ground penetrating radar: Years 2 and 3
Schultz John J., Walter Brittany S., Healy Carrie
Journal of Applied Geophysics. 2016 132 p.60
Geophysical monitoring of simulated graves with resistivity, magnetic susceptibility, conductivity and GPR in Colombia, South America
Molina Carlos Martin, Pringle Jamie K., Saumett Miguel, Evans Gethin T.
Forensic Science International. 2016 261 p.106
Time‐Lapse Geophysical Investigations over a Simulated Urban Clandestine Grave*
Pringle Jamie K., Jervis John, Cassella John P., Cassidy Nigel J.
Journal of Forensic Sciences. 2008 53(6). p.1405
A comparison of GPR data from rural historic cemeteries in Kansas
19th International Conference on Ground Penetrating Radar (2022)
Schneider B.B., Rice M.
Semblance analysis to assess GPR data from a five-year forensic study of simulated clandestine graves
Booth Adam D., Pringle Jamie K.
Journal of Applied Geophysics. 2016 125 p.37
Testing Application of Geographical Information Systems, Forensic Geomorphology and Electrical Resistivity Tomography to Investigate Clandestine Grave Sites in Colombia, South America
Molina Carlos Martin, Wisniewski Kristopher D., Drake Jonathan, Baena Alejandra, Guatame Ana, Pringle Jamie K.
Journal of Forensic Sciences. 2020 65(1). p.266
Geophysical imaging of buried human remains in simulated mass and single graves: Experiment design and results from pre-burial to six months after burial
Doro Kennedy O., Kolapkar Amar M., Bank Carl-Georg, Wescott Daniel J., Mickleburgh Hayley L.
Forensic Science International. 2022 335 p.111289
Optimizing search strategies in mass grave location through the combination of digital technologies
Abate D., Sturdy Colls C., Moyssi N., Karsili D., Faka M., Anilir A., Manolis S.
Forensic Science International: Synergy. 2019 1 p.95
Geophysical Investigations of United States Revolutionary War Era (1777–1778) Mass Burial Sites in Pennsylvania, USA
Sherrod Laura, Willever Heather, Shollenberger Kim, Potter Corey, Thorne Roger, Kline Ann
Journal of Environmental and Engineering Geophysics. 2020 25(4). p.477
The search for graves with ground-penetrating radar in Connecticut
Doolittle James A., Bellantoni Nicholas F.
Journal of Archaeological Science. 2010 37(5). p.941
Preliminary results of sequential monitoring of simulated clandestine graves in Colombia, South America, using ground penetrating radar and botany
Molina Carlos Martin, Pringle Jamie K., Saumett Miguel, Hernández Orlando
Forensic Science International. 2015 248 p.61
The search for the lost graves of the Chinese miners in Hailey, Idaho, USA
2012 14th International Conference on Ground Penetrating Radar (GPR) (2012)
Bradford J. H.
Long‐term Geophysical Monitoring of Simulated Clandestine Graves using Electrical and Ground Penetrating Radar Methods: 4–6 Years After Burial
Pringle Jamie K., Jervis John R., Roberts Daniel, Dick Henry C., Wisniewski Kristopher D., Cassidy Nigel J., Cassella John P.
Journal of Forensic Sciences. 2016 61(2). p.309
Delineation of graves using electrical resistivity tomography
Nero Callistus, Aning Akwasi Acheampong, Danuor Sylvester K., Noye Reginald M.
Journal of Applied Geophysics. 2016 126 p.138
Invasion, retaliation, concealment and silences at Dead Man's Flat, South Australia: A consideration of the historical, archaeological and geophysical evidence of frontier conflict
Roberts Amy, Barnard-Brown Jessica, Moffat Ian, Burke Heather, Westell Craig, Aboriginal Corporation the River Murray and Mallee
Transactions of the Royal Society of South Australia. 2021 145(2). p.194
Electrical resistivity survey to search for a recent clandestine burial of a homicide victim, UK
Pringle Jamie K., Jervis John R.
Forensic Science International. 2010 202(1-3). p.e1
Using Ground Penetrating Radar and Resistivity Methods to Locate Unmarked Graves: A Review
Berezowski Victoria, Mallett Xanthé, Ellis Justin, Moffat Ian
Remote Sensing. 2021 13(15). p.2880
Geophysical Monitoring of Simulated Clandestine Graves Using Electrical and Ground‐Penetrating Radar Methods: 0–3 Years After Burial*,†
Pringle Jamie K., Jervis John R., Hansen James D., Jones Glenda M., Cassidy Nigel J., Cassella John P.
Journal of Forensic Sciences. 2012 57(6). p.1467
Influence of the sand-clay ratio of the burial material of forensic targets on ground-penetrating radar (GPR) responses–comparison of dry and rainy season data
Castro Kimberly Coutinho Paes Leme de, Cunha Luciano Soares da, Sousa Ana Clara de Araujo, Nogueira Pedro Vencovsky, Borges Welitom Rodrigues
Frontiers in Earth Science. 2024 12
Geophysical remote sensing of historical Aboriginal gravesites in southwestern Western Australia
Gavin Lisa J., Hoskin Thomas, Witten Ben, Deeks James, Kamei Rie, Markov Jelena, Shragge Jeffrey
The Leading Edge. 2014 33(12). p.1348
Soilwater Conductivity Analysis to Date and Locate Clandestine Graves of Homicide Victims
Pringle Jamie K., Cassella John P., Jervis John R., Williams Anna, Cross Peter, Cassidy Nigel J.
Journal of Forensic Sciences. 2015 60(4). p.1052
Soil in Criminal and Environmental Forensics (2016)
Barone P. M., Ferrara C., Pettinelli E., Fazzari A.
Export Citation