Weber, M.; Beneke, C.; Wheeler, C.
Unified Deep Learning Model for Global Prediction of Aboveground Biomass, Canopy Height, and Cover from High-Resolution, Multi-Sensor Satellite Imagery. Remote Sens. 2025, 17, 1594.
https://doi.org/10.3390/rs17091594
AMA Style
Weber M, Beneke C, Wheeler C.
Unified Deep Learning Model for Global Prediction of Aboveground Biomass, Canopy Height, and Cover from High-Resolution, Multi-Sensor Satellite Imagery. Remote Sensing. 2025; 17(9):1594.
https://doi.org/10.3390/rs17091594
Chicago/Turabian Style
Weber, Manuel, Carly Beneke, and Clyde Wheeler.
2025. "Unified Deep Learning Model for Global Prediction of Aboveground Biomass, Canopy Height, and Cover from High-Resolution, Multi-Sensor Satellite Imagery" Remote Sensing 17, no. 9: 1594.
https://doi.org/10.3390/rs17091594
APA Style
Weber, M., Beneke, C., & Wheeler, C.
(2025). Unified Deep Learning Model for Global Prediction of Aboveground Biomass, Canopy Height, and Cover from High-Resolution, Multi-Sensor Satellite Imagery. Remote Sensing, 17(9), 1594.
https://doi.org/10.3390/rs17091594