Loudermilk, E.L.; Pokswinski, S.; Hawley, C.M.; Maxwell, A.; Gallagher, M.R.; Skowronski, N.S.; Hudak, A.T.; Hoffman, C.; Hiers, J.K.
Terrestrial Laser Scan Metrics Predict Surface Vegetation Biomass and Consumption in a Frequently Burned Southeastern U.S. Ecosystem. Fire 2023, 6, 151.
https://doi.org/10.3390/fire6040151
AMA Style
Loudermilk EL, Pokswinski S, Hawley CM, Maxwell A, Gallagher MR, Skowronski NS, Hudak AT, Hoffman C, Hiers JK.
Terrestrial Laser Scan Metrics Predict Surface Vegetation Biomass and Consumption in a Frequently Burned Southeastern U.S. Ecosystem. Fire. 2023; 6(4):151.
https://doi.org/10.3390/fire6040151
Chicago/Turabian Style
Loudermilk, Eva Louise, Scott Pokswinski, Christie M. Hawley, Aaron Maxwell, Michael R. Gallagher, Nicholas S. Skowronski, Andrew T. Hudak, Chad Hoffman, and John Kevin Hiers.
2023. "Terrestrial Laser Scan Metrics Predict Surface Vegetation Biomass and Consumption in a Frequently Burned Southeastern U.S. Ecosystem" Fire 6, no. 4: 151.
https://doi.org/10.3390/fire6040151
APA Style
Loudermilk, E. L., Pokswinski, S., Hawley, C. M., Maxwell, A., Gallagher, M. R., Skowronski, N. S., Hudak, A. T., Hoffman, C., & Hiers, J. K.
(2023). Terrestrial Laser Scan Metrics Predict Surface Vegetation Biomass and Consumption in a Frequently Burned Southeastern U.S. Ecosystem. Fire, 6(4), 151.
https://doi.org/10.3390/fire6040151