Fu, L.; Liu, Q.; Sun, H.; Wang, Q.; Li, Z.; Chen, E.; Pang, Y.; Song, X.; Wang, G.
Development of a System of Compatible Individual Tree Diameter and Aboveground Biomass Prediction Models Using Error-In-Variable Regression and Airborne LiDAR Data. Remote Sens. 2018, 10, 325.
https://doi.org/10.3390/rs10020325
AMA Style
Fu L, Liu Q, Sun H, Wang Q, Li Z, Chen E, Pang Y, Song X, Wang G.
Development of a System of Compatible Individual Tree Diameter and Aboveground Biomass Prediction Models Using Error-In-Variable Regression and Airborne LiDAR Data. Remote Sensing. 2018; 10(2):325.
https://doi.org/10.3390/rs10020325
Chicago/Turabian Style
Fu, Liyong, Qingwang Liu, Hua Sun, Qiuyan Wang, Zengyuan Li, Erxue Chen, Yong Pang, Xinyu Song, and Guangxing Wang.
2018. "Development of a System of Compatible Individual Tree Diameter and Aboveground Biomass Prediction Models Using Error-In-Variable Regression and Airborne LiDAR Data" Remote Sensing 10, no. 2: 325.
https://doi.org/10.3390/rs10020325
APA Style
Fu, L., Liu, Q., Sun, H., Wang, Q., Li, Z., Chen, E., Pang, Y., Song, X., & Wang, G.
(2018). Development of a System of Compatible Individual Tree Diameter and Aboveground Biomass Prediction Models Using Error-In-Variable Regression and Airborne LiDAR Data. Remote Sensing, 10(2), 325.
https://doi.org/10.3390/rs10020325