Fahle, L.; Petruska, A.J.; Walton, G.; Brune, J.F.; Holley, E.A.
Development and Testing of Octree-Based Intra-Voxel Statistical Inference to Enable Real-Time Geotechnical Monitoring of Large-Scale Underground Spaces with Mobile Laser Scanning Data. Remote Sens. 2023, 15, 1764.
https://doi.org/10.3390/rs15071764
AMA Style
Fahle L, Petruska AJ, Walton G, Brune JF, Holley EA.
Development and Testing of Octree-Based Intra-Voxel Statistical Inference to Enable Real-Time Geotechnical Monitoring of Large-Scale Underground Spaces with Mobile Laser Scanning Data. Remote Sensing. 2023; 15(7):1764.
https://doi.org/10.3390/rs15071764
Chicago/Turabian Style
Fahle, Lukas, Andrew J. Petruska, Gabriel Walton, Jurgen F. Brune, and Elizabeth A. Holley.
2023. "Development and Testing of Octree-Based Intra-Voxel Statistical Inference to Enable Real-Time Geotechnical Monitoring of Large-Scale Underground Spaces with Mobile Laser Scanning Data" Remote Sensing 15, no. 7: 1764.
https://doi.org/10.3390/rs15071764
APA Style
Fahle, L., Petruska, A. J., Walton, G., Brune, J. F., & Holley, E. A.
(2023). Development and Testing of Octree-Based Intra-Voxel Statistical Inference to Enable Real-Time Geotechnical Monitoring of Large-Scale Underground Spaces with Mobile Laser Scanning Data. Remote Sensing, 15(7), 1764.
https://doi.org/10.3390/rs15071764