Malcolm Williamson
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Research Scientist
Also affiliated: Genesis Medical Center (1998)
Staff Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Malcolm Williamson's research focuses on the application of remote sensing technologies, particularly unmanned aerial systems (UAS) and photogrammetry, across diverse scientific fields. He investigates how UAS-based imagery and thermal sensing can inform agricultural practices, such as evaluating the influence of soil heterogeneity on soybean development and crop yield. His work also extends to archaeological and anthropological applications, utilizing UAS photogrammetry for field sciences, including object avoidance and 3D flight planning, and identifying the functions of historical gravel mulch fields. Williamson has also explored the challenges and limitations of geospatial data in the context of public health, specifically concerning COVID-19. His scholarship metrics include an h-index of 7, with 67 total publications and 430 citations. He has collaborated with several researchers at the University of Arkansas at Fayetteville, including Jackson Cothren and Carla Klehm.
Metrics
- h-index: 7
- Publications: 67
- Citations: 433
Selected Publications
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Utility of UAS Photogrammetry and Thermal Sensors for Identifying Locations and Understanding Functions of Puebloan Gravel Mulch Fields in Northern New Mexico (2024)
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Remote, Rugged Field Scenarios for Archaeology and the Field Sciences: Object Avoidance and 3D Flight Planning with sUAS Photogrammetry (2024)
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Challenges and Limitations of Geospatial Data and Analyses in the Context of COVID-19 (2021)
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Influence of soil heterogeneity on soybean plant development and crop yield evaluated using time-series of UAV and ground-based geophysical imagery (2021)
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A New Era in Spatial Data Recording: Low-Cost GNSS (2019)
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Remote Sensing to Uav-Based Digital Farmland (2018)
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LIDAR-based characterization and conservation of the first theropod dinosaur trackways from Arkansas, USA (2018)
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Strategies for International Travel with “High-Tech” Archaeological Field Equipment (2017)
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An ecosystem restoration model for the Mississippi Alluvial Valley based on geomorphology, soils, and hydrology (2009)
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Technical note: Modeling primate occlusal topography using geographic information systems technology (1998)
Collaboration Network
Top Collaborators
- Influence of soil heterogeneity on soybean plant development and crop yield evaluated using time-series of UAV and ground-based geophysical imagery
- Challenges and Limitations of Geospatial Data and Analyses in the Context of COVID-19
- Remote, Rugged Field Scenarios for Archaeology and the Field Sciences: Object Avoidance and 3D Flight Planning with sUAS Photogrammetry
- Utility of UAS Photogrammetry and Thermal Sensors for Identifying Locations and Understanding Functions of Puebloan Gravel Mulch Fields in Northern New Mexico
- Influence of soil heterogeneity on soybean plant development and crop yield evaluated using time-series of UAV and ground-based geophysical imagery
- Influence of soil heterogeneity on soybean plant development and crop yield evaluated using time-series of UAV and ground-based geophysical imagery
- Influence of soil heterogeneity on soybean plant development and crop yield evaluated using time-series of UAV and ground-based geophysical imagery
- Influence of soil heterogeneity on soybean plant development and crop yield evaluated using time-series of UAV and ground-based geophysical imagery
- Influence of soil heterogeneity on soybean plant development and crop yield evaluated using time-series of UAV and ground-based geophysical imagery
- Influence of soil heterogeneity on soybean plant development and crop yield evaluated using time-series of UAV and ground-based geophysical imagery
- Influence of soil heterogeneity on soybean plant development and crop yield evaluated using time-series of UAV and ground-based geophysical imagery
- Influence of soil heterogeneity on soybean plant development and crop yield evaluated using time-series of UAV and ground-based geophysical imagery
- Influence of soil heterogeneity on soybean plant development and crop yield evaluated using time-series of UAV and ground-based geophysical imagery
- Influence of soil heterogeneity on soybean plant development and crop yield evaluated using time-series of UAV and ground-based geophysical imagery
- Influence of soil heterogeneity on soybean plant development and crop yield evaluated using time-series of UAV and ground-based geophysical imagery
- Challenges and Limitations of Geospatial Data and Analyses in the Context of COVID-19
- Challenges and Limitations of Geospatial Data and Analyses in the Context of COVID-19
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