Application of UAV Devices to Assess Post-Drought Canopy Vigor in Two Pine Forests Showing Die-Off

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Abstract

Highlights: What are the main findings? High-resolution UAV data enabled accurate tree health assessment. Combining vegetation indices with structural and topographic variables improved tree vigor classification. What are the implications of the main findings? A robust workflow allows integrating segmentation, classification, and model selection for effective forest die-off assessment. Accounting for structural and topographic variables and their spatial components is key when evaluating vegetation vigor responses to drought. Rising temperatures and droughts are triggering forest die-off in climate warming hotspots such as the Mediterranean Basin. UAVs equipped with LiDAR and multispectral sensors offer a powerful tool for surveys of tree vigor at landscape level. We used UAV-acquired LiDAR data and multispectral camera imagery to segment individual tree crowns, classify species, and assess the health status in two drought-affected forests in northeastern Spain: a mixed Pinus pinaster–Quercus ilex forest and a Pinus halepensis forest. Individual trees were segmented and classified using object-based image analysis with the Random Forest algorithm incorporating spectral, structural, and topographic variables. Greenness indices (NDVI and EVI) were analyzed in relation to crown height, topography (slope and elevation) and solar radiation, and their interactions. Analyses showed satisfactory crown segmentation (F-Score = 0.85–0.86) and species classification (Overall accuracy = 0.86–0.99), though distinguishing spectrally similar classes remained challenging. Taller P. pinaster trees exhibited higher NDVI, while taller P. halepensis displayed higher NDVI values in dense neighborhoods and on gentle slopes. These findings highlight the potential of high-resolution UAV-based remote sensing for effective near-real-time detection and attribution of forest die-off. Future research should aim to improve algorithm accuracy and better integrate field-based validation across different forest types.

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Tamudo, E., Revuelto, J., Gazol, A., & Camarero, J. J. (2026). Application of UAV Devices to Assess Post-Drought Canopy Vigor in Two Pine Forests Showing Die-Off. Remote Sensing, 18(6). https://doi.org/10.3390/rs18060916

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