Matthew Brolly
Dados Biográficos
| ID | 6452252 |
|---|---|
| NOME | Matthew Brolly |
| PRENOMES | Matthew |
| SOBRENOME | Brolly |
| ASSINATURA | BROLLY M |
| AFILIAÇÕES | National Centre for Earth Observation |
| ORCID | 0000-0002-3576-9675 |
| VERIFICADO | Sim |
| TOTAL DE OBRAS | 4 |
| TOTAL DE CITAÇÕES | 7 |
| TOTAL COMO AUTOR | 4 |
| TOTAL COMO EDITOR | 0 |
| PRIMEIRO ANO DE PUBLICAÇÃO | 2022 |
| ANO MAIS RECENTE DE PUBLICAÇÃO | 2025 |
| ÍNDICE H | 2 |
Novel approaches for enhanced visualisation and recognition of rock carvings at Stonehenge
Difference of Gaussians and pseudo-depth mapping reveal new carvings at Stonehenge. • 4 new, 10 potential, and 9 alternatives of carvings were found on Stone 53. • 3-D classifier MeshNet achieves 90.7 % accuracy on carving recognition tasks. • Methods reveal overlapping carvings, contradicting prevailing knowledge. • This could imply a more complex pattern of mark-making at Stonehenge than presumed. The sarsen uprights at Stonehenge feature the l…
SARchaeological Prospection
Temperate river floodplains present a significant challenge for archaeologists, as cultural and palaeoenvironmental remains are often difficult to locate but can be exceptionally well preserved, especially where groundwater levels are high. In these alluvial environments, the deposition of thick, fine‐grained sediments has potential to deeply bury rich archaeological archives that can be used to reconstruct past environments, but these deposits a…
Lidar visualization techniques for the construction of geoarchaeological deposit models
Lidar has become an essential tool for the mapping and interpretation of natural and archaeological features within the landscape. It is also increasingly integrated and visualized within geoarchaeological deposit models, providing valuable topographic and stratigraphic control from the contemporary ground surface downwards. However, there is a wide range of methods available for the visualization of lidar elevation models and a review of existin…
Modelling geoarchaeological resources in temperate alluvial environments
Temperate river systems cover large regions of the earth's surface and provide challenging environments for the detection of archaeological remains. The deposition of alluvium above, and interbedded with, archaeological deposits means conventional forms of archaeological prospection such as geophysical survey or aerial photography are often ineffective. Consequently, archaeologists have turned to the construction of deposit models to evaluate the…
Modelling geoarchaeological resources in temperate alluvial environments
Temperate river systems cover large regions of the earth's surface and provide challenging environments for the detection of archaeological remains. The deposition of alluvium above, and interbedded with, archaeological deposits means conventional forms of archaeological prospection such as geophysical survey or aerial photography are often ineffective. Consequently, archaeologists have turned to the construction of deposit models to evaluate the…
Lidar visualization techniques for the construction of geoarchaeological deposit models
Lidar has become an essential tool for the mapping and interpretation of natural and archaeological features within the landscape. It is also increasingly integrated and visualized within geoarchaeological deposit models, providing valuable topographic and stratigraphic control from the contemporary ground surface downwards. However, there is a wide range of methods available for the visualization of lidar elevation models and a review of existin…
Modelling geoarchaeological resources in temperate alluvial environments
Temperate river systems cover large regions of the earth's surface and provide challenging environments for the detection of archaeological remains. The deposition of alluvium above, and interbedded with, archaeological deposits means conventional forms of archaeological prospection such as geophysical survey or aerial photography are often ineffective. Consequently, archaeologists have turned to the construction of deposit models to evaluate the…
Lidar visualization techniques for the construction of geoarchaeological deposit models
Lidar has become an essential tool for the mapping and interpretation of natural and archaeological features within the landscape. It is also increasingly integrated and visualized within geoarchaeological deposit models, providing valuable topographic and stratigraphic control from the contemporary ground surface downwards. However, there is a wide range of methods available for the visualization of lidar elevation models and a review of existin…
Novel approaches for enhanced visualisation and recognition of rock carvings at Stonehenge
Difference of Gaussians and pseudo-depth mapping reveal new carvings at Stonehenge. • 4 new, 10 potential, and 9 alternatives of carvings were found on Stone 53. • 3-D classifier MeshNet achieves 90.7 % accuracy on carving recognition tasks. • Methods reveal overlapping carvings, contradicting prevailing knowledge. • This could imply a more complex pattern of mark-making at Stonehenge than presumed. The sarsen uprights at Stonehenge feature the l…
SARchaeological Prospection
Temperate river floodplains present a significant challenge for archaeologists, as cultural and palaeoenvironmental remains are often difficult to locate but can be exceptionally well preserved, especially where groundwater levels are high. In these alluvial environments, the deposition of thick, fine‐grained sediments has potential to deeply bury rich archaeological archives that can be used to reconstruct past environments, but these deposits a…
Archaeological Research and Protection (4 obras) · Archaeology (4 obras) · Geology (4 obras) · Geography (3 obras) · Remote sensing (3 obras) · 3D Surveying and Cultural Heritage (2 obras) · Alluvium (2 obras) · Cartography (2 obras) · Earth science (2 obras) · Engineering (2 obras)