Mapping tropical forest trees across large areas with lightweight cost-effective terrestrial laser scanning
Author:
Publisher
Springer Science and Business Media LLC
Subject
Ecology,Forestry
Link
https://link.springer.com/content/pdf/10.1007/s13595-021-01113-9.pdf
Reference42 articles.
1. Anderson-Teixeira KJ, Davies SJ, Bennett AC, Gonzalez-Akre EB, Muller-Landau HC, Joseph Wright S, Abu Salim K, Almeyda Zambrano AM, Alonso A, Baltzer JL, Basset Y (2015) CTFS-Forest GEO: a worldwide network monitoring forests in an era of global change. Glob Change Biol 21:528–549
2. Bauwens S, Bartholomeus H, Calders K, Lejeune P (2016) Forest inventory with terrestrial LiDAR: a comparison of static and hand-held mobile laser scanning. Forests 7:127
3. Brede, B., Calders, K., Lau, A., Raumonen, P., Bartholomeus, H. M., Herold, M., Kooistra, L., 2019. Non-destructive tree volume estimation through quantitative structure modelling: comparing UAV laser scanning with terrestrial LIDAR. Remote Sens. Environ. 233, 111355.
4. Brede B, Lau A, Bartholomeus HM, Kooistra L (2017) Comparing RIEGL RiCOPTER UAV LiDAR derived canopy height and DBH with terrestrial LiDAR. Sensors 17:2371
5. Brienen RJ, Phillips OL, Feldpausch TR, Gloor E, Baker TR, Lloyd J, Lopez-Gonzalez G, Monteagudo-Mendoza A, Malhi Y, Lewis SL, Martinez RV (2015) Long-term decline of the Amazon carbon sink. Nature 519:344–348
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