Mapping of non-submerged aquatic vegetation by using UAV for clarifying the status of <i>Eichhornia crassipes</i> (Mart.) Solms in the Nong Bong Khai Non-hunting Area, Thailand
Author:
Affiliation:
1. The United Graduate School of Agricultural Science, Tottori University
2. The Nichinan Chugoku-sanchi Forest Academy
3. Faculty of Agriculture, Tottori University
Publisher
The Japanese Society of Revegetation Technology
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/jjsrt/47/2/47_273/_pdf
Reference58 articles.
1. 1) Adam, E., Mutanga, O. and Rugege, D. (2010) Multispectral and hyperspectral remote sensing for Identification and mapping of wetland vegetation: A review. Wetlands Ecology and Management 18: 281-296.
2. 2) Anderson, K. and Gaston, J.K. (2013) Lightweight unmanned aerial vehicles will revolutionize Spatial Ecology. Frontiers in Ecology and the Environment 11: 138-146. https://doi.org/10.1890/120150
3. 3) Andrea, B., Vittoria, G., Carmelo Di, F. and Nicola, S. (2019) Using unmanned aerial vehicles for vegetation mapping and identification of botanical species in wetlands. Landscape and Ecological Engineering 15(2), 231-240.
4. 4) Arnold, T., Biasio, M.D., Fritz, A. and Leitner, R. (2013) UAV-Based Measurement of Vegetation Indices for Environmental Monitoring. Seventh International Conference on Sensing Technology, Wellington, 708-711.
5. 5) Ashraf, S., Brabyn, L., Hicks, B.J. and Collier, K. (2010) Satellite remote sensing for mapping vegetation in New Zealand freshwater environments: A review. New Zealand Geographer 66: 33-43.
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1. The effect of water level fluctuation due to decreased precipitation on the non-submerged aquatic vegetation in Nong Bong Khai Non-hunting Area, Northern Thailand;Journal of the Japanese Society of Revegetation Technology;2022-05-31
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