Access the full text.
Sign up today, get DeepDyve free for 14 days.
G. Newnham, J. Armston, K. Calders, K. Calders, M. Disney, J. Lovell, C. Schaaf, A. Strahler, F. Danson (2015)
Terrestrial Laser Scanning for Plot-Scale Forest MeasurementCurrent Forestry Reports, 1
EPBC Act List of Threatened Ecological Communities
A. Strahler, D. Jupp, C. Woodcock, C. Schaaf, T. Yao, F. Zhao, Xiaoyuan Yang, J. Lovell, D. Culvenor, G. Newnham, Wenge Ni-Miester, William Boykin-Morris (2008)
Retrieval of forest structural parameters using a ground-based lidar instrument (Echidna®)Canadian Journal of Remote Sensing, 34
Ian Paynter, E. Saenz, D. Genest, F. Peri, A. Erb, Zhan Li, Kara Wiggin, Jasmine Muir, P. Raumonen, E. Schaaf, A. Strahler, C. Schaaf (2016)
Observing ecosystems with lightweight, rapid‐scanning terrestrial lidar scannersRemote Sensing in Ecology and Conservation, 2
J. Eitel, B. Höfle, L. Vierling, A. Abellán, G. Asner, J. Deems, C. Glennie, P. Joerg, A. LeWinter, T. Magney, G. Mandlburger, D. Morton, Jörg Müller, K. Vierling (2016)
Beyond 3-D: The New Spectrum of Lidar Applications for Earth and Ecological SciencesRemote Sensing of Environment, 186
A. MacKinnon (2012)
Forest Structure : A Key to the Ecosystem
Xinlian Liang, P. Litkey, J. Hyyppä, H. Kaartinen, M. Vastaranta, M. Holopainen (2012)
Automatic Stem Mapping Using Single-Scan Terrestrial Laser ScanningIEEE Transactions on Geoscience and Remote Sensing, 50
J. Lovell, D. Jupp, G. Newnham, D. Culvenor (2011)
Measuring tree stem diameters using intensity profiles from ground-based scanning lidar from a fixed viewpointIsprs Journal of Photogrammetry and Remote Sensing, 66
(2018)
The Authors. Remote Sensing in Ecology and Conservation
Fadhillah Norzahari, R. Turner, Samsung Lim, J. Trinder (2012)
Estimating taper diameter and stem form of Pinus radiata in Australia by terrestrial laser scanning2012 IEEE International Geoscience and Remote Sensing Symposium
F. M. Danson, F. Morsdorf, B. Koetz (2009)
Laser Scanning for the Environmental Sciences
K. Calders, G. Newnham, A. Burt, S. Murphy, P. Raumonen, M. Herold, D. Culvenor, V. Avitabile, M. Disney, J. Armston, M. Kaasalainen (2015)
Nondestructive estimates of above‐ground biomass using terrestrial laser scanningMethods in Ecology and Evolution, 6
K. Calders, J. Armston, G. Newnham, M. Herold, Nicholas Goodwin (2014)
Implications of sensor configuration and topography on vertical plant profiles derived from terrestrial LiDARAgricultural and Forest Meteorology, 194
D. Lindenmayer, C. Margules, D. Botkin (2000)
Indicators of Biodiversity for Ecologically Sustainable Forest ManagementConservation Biology, 14
Keqi Zhang, Shu‐Ching Chen, D. Whitman, M. Shyu, Jianhua Yan, Chengcui Zhang (2003)
A progressive morphological filter for removing nonground measurements from airborne LIDAR dataIEEE Trans. Geosci. Remote. Sens., 41
J. Scanlan (1991)
Woody overstorey and herbaceous understorey biomass in Acacia harpophylla (brigalow) woodlandsAustral Ecology, 16
F. Danson, F. Morsdorf, B. Koetz (2009)
Airborne and terrestrial laser scanning for measuring vegetation canopy structure
Xinlian Liang, V. Kankare, J. Hyyppä, Yunshen Wang, A. Kukko, H. Haggrén, Xiaowei Yu, H. Kaartinen, A. Jaakkola, F. Guan, M. Holopainen, M. Vastaranta (2016)
Terrestrial laser scanning in forest inventoriesIsprs Journal of Photogrammetry and Remote Sensing, 115
A. Kelly, A. Franks, T. Eyre (2011)
Assessing the assessors: Quantifying observer variation in vegetation and habitat assessmentEcological Management and Restoration, 12
Xinlian Liang, J. Hyyppä (2013)
Automatic Stem Mapping by Merging Several Terrestrial Laser Scans at the Feature and Decision LevelsSensors (Basel, Switzerland), 13
(2012)
The effect of observer experience levels on the variability of fractional ground cover reference data
L. Seabrook, C. McAlpine, R. Fensham (2006)
Cattle, crops and clearing: Regional drivers of landscape change in the Brigalow Belt, Queensland, Australia, 1840-2004Landscape and Urban Planning, 78
Nicholas Goodwin, J. Armston, Isaac Stiller, Jasmine Muir (2016)
Assessing the repeatability of terrestrial laser scanning for monitoring gully topography: A case study from Aratula, Queensland, AustraliaGeomorphology, 262
(2008)
Biometric, Version 2.0. a terrestrial biodiversity assessment tool for the nsw property vegetation plan developer – operational manual. Department of Environment and Climate Change, Canberra, ACT
(2015)
BioCondition: a condition assessment framework for terrestrial biodiversity in Queensland (No. Version 2.2), Assessment Manual. Department of Environment and Resource Management (DERM)
M. Béland, D. Baldocchi, J. Widlowski, R. Fournier, M. Verstraete (2014)
On seeing the wood from the leaves and the role of voxel size in determining leaf area distribution of forests with terrestrial LiDARAgricultural and Forest Meteorology, 184
C. Hopkinson, J. Lovell, L. Chasmer, D. Jupp, N. Kljun, E. Gorsel (2013)
Integrating terrestrial and airborne lidar to calibrate a 3D canopy model of effective leaf area indexRemote Sensing of Environment, 136
D. Parkes, G. Newell, D. Cheal (2003)
Assessing the quality of native vegetation: The 'habitat hectares' approachEcological Management and Restoration, 4
P. Wilkes, Alvaro Lau, M. Disney, K. Calders, A. Burt, J. Tanago, H. Bartholomeus, Benjamin Brede, M. Herold (2017)
Data acquisition considerations for Terrestrial Laser Scanning of forest plotsRemote Sensing of Environment, 196
Xinlian Liang, V. Kankare, Xiaowei Yu, J. Hyyppä, M. Holopainen (2014)
Automated Stem Curve Measurement Using Terrestrial Laser ScanningIEEE Transactions on Geoscience and Remote Sensing, 52
T. Hilker, N. Coops, D. Culvenor, G. Newnham, M. Wulder, C. Bater, A. Siggins (2012)
A simple technique for co-registration of terrestrial LiDAR observations for forestry applicationsRemote Sensing Letters, 3
(2017)
Land cover change in Queensland 2015–16: a Statewide Landcover and Trees Study (SLATS) report (Executive Summary)
J. Trochta, Martin Krůček, T. Vrška, Kamil Král (2017)
3D Forest: An application for descriptions of three-dimensional forest structures using terrestrial LiDARPLoS ONE, 12
G. Taubin (1991)
Estimation of Planar Curves, Surfaces, and Nonplanar Space Curves Defined by Implicit Equations with Applications to Edge and Range Image SegmentationIEEE Trans. Pattern Anal. Mach. Intell., 13
(2001)
Australian native vegetation assessment 2001
Matthew McDonald, K. Reese (1998)
LANDSCAPE CHANGES WITHIN THE HISTORICAL DISTRIBUTION OF COLUMBIAN SHARP-TAILED GROUSE IN EASTERN WASHINGTON : IS THERE HOPE?Northwest Science, 72
K. Olofsson, H. Olsson (2018)
Estimating tree stem density and diameter distribution in single-scan terrestrial laser measurements of field plots: a simulation studyScandinavian Journal of Forest Research, 33
T. Yao, Xiaoyuan Yang, F. Zhao, Zhuosen Wang, Qingling Zhang, D. Jupp, J. Lovell, D. Culvenor, G. Newnham, W. Ni-Meister, C. Schaaf, C. Woodcock, Jindi Wang, Xiaowen Li, A. Strahler (2011)
Measuring forest structure and biomass in New England forest stands using Echidna ground-based lidarRemote Sensing of Environment, 115
V. Lawley, Megan Lewis, K. Clarke, B. Ostendorf (2016)
Site-based and remote sensing methods for monitoring indicators of vegetation condition: An Australian reviewEcological Indicators, 60
E. S. (1934)
Quantitative Plant EcologyNature, 134
Xiaoyuan Yang, A. Strahler, C. Schaaf, D. Jupp, T. Yao, F. Zhao, Zhuosen Wang, D. Culvenor, G. Newnham, J. Lovell, R. Dubayah, C. Woodcock, W. Ni-Meister (2013)
Three-dimensional forest reconstruction and structural parameter retrievals using a terrestrial full-waveform lidar instrument (Echidna®)Remote Sensing of Environment, 135
F. Danson, D. Hetherington, F. Morsdorf, B. Koetz, B. Allgöwer (2007)
Forest Canopy Gap Fraction From Terrestrial Laser ScanningIEEE Geoscience and Remote Sensing Letters, 4
M. Harmon, J. Franklin, F. Swanson, P. Sollins, S. Gregory, J. Lattin, N. Anderson, S. Cline, N. Aumen, J. Sedell, G. Lienkaemper, K. Cromack, K. Cummins (1986)
Ecology of Coarse Woody Debris in Temperate EcosystemsAdvances in Ecological Research, 15
Jasmine Muir, Nicholas Goodwin, J. Armston, S. Phinn, P. Scarth (2017)
An Accuracy Assessment of Derived Digital Elevation Models from Terrestrial Laser Scanning in a Sub-Tropical Forested EnvironmentRemote. Sens., 9
M. Lemmens (2011)
Terrestrial Laser Scanning
Li Yan, Junxiang Tan, Hua Liu, Hong Xie, Changjun Chen (2017)
Automatic Registration of TLS-TLS and TLS-MLS Point Clouds Using a Genetic AlgorithmSensors (Basel, Switzerland), 17
W. Woodgate, J. Armston, M. Disney, S. Jones, L. Suárez, M. Hill, P. Wilkes, M. Soto‐Berelov (2016)
Quantifying the impact of woody material on leaf area index estimation from hemispherical photography using 3D canopy simulationsAgricultural and Forest Meteorology, 226227
F. Zhao, Xiaoyuan Yang, M. Schull, Miguel Román-Colón, T. Yao, Zhuosen Wang, Qingling Zhang, D. Jupp, J. Lovell, D. Culvenor, G. Newnham, A. Richardson, W. Ni-Meister, Crystal Schaaf, C. Woodcock, A. Strahler (2011)
Measuring Effective Leaf Area Index, Foliage Profile, and Stand Height in New England Forest Stands Using a Full-Waveform Ground-Based LidarRemote Sensing of Environment, 115
Remote Sensing in Ecology and Conservation – Wiley
Published: Dec 1, 2018
Keywords: ; ; ; ;
You can share this free article with as many people as you like with the url below! We hope you enjoy this feature!
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.