Airborne lidar and historic environment records
Bibliographic Data
| ID | 3237045 |
|---|---|
| Authors | Keith Challis (0009-0003-5439-7795, University of Birmingham, corresponding author), Žiga Kokalj (0000-0003-1712-0351, Slovenian Academy of Sciences and Arts), Mark Kincey (0000-0002-9632-4223, University of Birmingham), Derek Moscrop (University of Birmingham), Andy J Howard (0000-0002-5112-7189, University of Birmingham) |
| Year | 2008 |
| Volume | 82 |
| Issue | 318 |
| Pages | 1055-1064 |
| Publication date | 2008-12-01 |
| Peer Reviewed | Yes |
| Open Access | Yes |
| Type | ARTICLE |
| Venue | Antiquity (JOURNAL) |
| Journal identifiers | ISSN: 0003-598X • E-ISSN: 1745-1744 |
| Publisher | Cambridge University Press (CUP) (PUBLISHER) |
| DOI | 10.1017/s0003598x00097775 |
| OpenAlex | W2146819273 |
| Language | EN |
| Citations received | 22 |
| References cited | 15 |
The authors assess the potential contribution of lidar surveys to national inventories of archaeological resources ('Historic Environment Records'), and compare the relative costs and sensitivity of lidar and aerial photography
Aerial photography · Aerial Survey · Archaeology · Geography · Lidar · Remote sensing · 3D Surveying and Cultural Heritage · Archaeological Research and Protection · Remote Sensing and LiDAR Applications
Pixel versus object — A comparison of strategies for the semi-automated mapping of archaeological features using airborne laser scanning data
Reconstructing the protohistoric landscape of Trieste Karst (north-eastern Italy) through airborne LiDAR remote sensing
Automatic detection of archaeological features from airborne laser scanning data using deep learning
Reconstructing the layout of a coastal Georgia Plantation
Adapting LiDAR data for regional variation in the tropics
A Comparison of Visualization Techniques for Models Created from Airborne Laser Scanned Data
LiDAR‐derived Local Relief Models – a new tool for archaeological prospection
Potential and limitations of LiDAR altimetry in archaeological survey. Copper Age and Bronze Age settlements in southern Iberia
Airborne lidar intensity and geoarchaeological prospection in river valley floors
A Generic Toolkit for the Visualization of Archaeological Features on Airborne LiDAR Elevation Data
Lidar visualization techniques for the construction of geoarchaeological deposit models
Visualization techniques for an airborne laser scanning‐derived digital terrain model in forested steep terrain
Visualization of lidar-derived relief models for detection of archaeological features
Airborne lidar survey of irrigated agricultural landscapes
Problematising the Historic Environment Record
Décrypter la mémoire forestière au prisme de l’écologie historique
Detecting Late Holocene cultural landscape modifications using LiDAR imagery in the Boreal Forest, Susitna Valley, Southcentral Alaska
Detecting Cultural Remains in Boreal Forests in Sweden Using Airborne Laser Scanning Data of Different Resolutions
Lidar data and the Izapa polity
A multi-level and multi-sensor documentation approach of the Treblinka extermination and labor camps
Application of sky-view factor for the visualisation of historic landscape features in lidar-derived relief models
Every Rusty Nail Is Sacred, Every Rusty Nail Is Good
Global warming The implications for sustainable archaeological resource management
A review of trends within archaeological remote sensing in alluvial environments
Aerial remote‐sensing techniques used in the management of archaeological monuments on the British Army's Salisbury Plain Training Area, Wiltshire, UK
Light detection and ranging (lidar) in the Witham Valley, Lincolnshire
Beneath the sand—remote sensing, archaeology, aggregates and sustainability
Predictive modelling of multiperiod geoarchaeological resources at a river confluence
Airborne laser altimetry in alluviated landscapes
New light on an ancient landscape
The potential of airborne lidar for detection of archaeological features under woodland canopies
LiDAR for Archaeological Landscape Analysis
| Unique citing works | 22 |
|---|---|
| Citations per year | 1,38 |
| Citation span | 2010 - 2026 (17) |
| Citation velocity | current |
| Highly cited | No |
| Citation types | Neutral: 22 |