Effective Spatial Resolution for Monitoring Rice Spittlebug (Callitettix versicolor Fabricius) Damage Using Multispectral UAVs
Institute of Remote Sensing and Earth Sciences, Hangzhou Normal University, Hangzhou 311121, China; Sanya Institute of Nanjing Agriculture University, Sanya 572000, China; Center for Agricultural Remote Sensing and Information Technology, Zhejiang University Zhongyuan Institute, Zhengzhou 450007, China; Zhejiang Provincial General Station for Plant Protection, Quarantine and Pesticide Management, Hangzhou 310029, China; China National Rice Research Institute, Hangzhou 3114000, China; Institute of Insect Sciences of Zhejiang University, Hangzhou 310058, China; Department of Human Geography and Regional Studies, Faculty of Geology, Geography, Recreation and Tourism, V.N. Karazin Kharkiv National University, Svobody Sq.4, Kharkiv 61022, Ukraine; Hangzhou Daodao Agricultural Science & Technology Co., Ltd., Hangzhou 311121, China; Center for Global Change and Earth Observation, Michigan State University, East Lansing, MI 48823, USA
Contact:
LIU Zhanyu
Supported by:
This
study was financially supported by the Zhejiang Provincial
Agriculture-Rural-Farmer Science and Technology Cooperation Program, China
(Grant Nos. 2024SNJF032 and 2025SNJF012). The authors are grateful to Zhao Min and Yang
Anjie from the Tonglu Plant Protection Station, China, for their valuable
assistance in the field data collection of rice spittlebug (Callitettix
versicolor Fabricius).
XI Rui, LU Jianfei, YAO Xiaoming, LIU Shuhua, ZHU Zengrong, Pavlo KOBYLIN, QI Jiaguo, LIU Zhanyu. Effective Spatial Resolution for Monitoring Rice Spittlebug (Callitettix versicolor Fabricius) Damage Using Multispectral UAVs[J]. Rice Science.