Spatial information on forest functional composition is needed to inform management and conservation efforts, yet this information is lacking, particularly in tropical regions. Canopy foliar traits underpin the functional biodiversity of forests, and have been shown to be remotely measurable using airborne 350–2510 nm imaging spectrometers. We used newly acquired imaging spectroscopy data constrained with concurrent light detection and ranging (LiDAR) measurements from the Carnegie Airborne Observatory (CAO), and field measurements, to test the performance of the Spectranomics approach for foliar trait retrieval. The method was previously developed in Neotropical forests, and was tested here in the humid tropical forests of Malaysian Borneo...
Imaging spectroscopy is a powerful tool for mapping chemical leaf traits at the canopy level. Howeve...
High-resolution spectroscopy can be used to measure leaf chemical and structural traits. Such leaf t...
This study created and tested predictive models developed using airborne imaging spectrometer and li...
Spatial information on forest functional composition is needed to inform management and conservation...
Airborne high fidelity imaging spectroscopy (HiFIS) holds great promise for bridging the gap between...
Imaging spectroscopy is currently the best approach for continuously mapping forest canopy traits, w...
Monitoring the responses of leaf functional traits and vegetation structure to environmental change ...
Plant functional traits have been extensively used to describe, rank and discriminate species accord...
Tropical forest ecosystems are undergoing rapid transformation as a result of changing environmental...
Monitoring biodiversity is essential for the conservation and management of forest resources. A meth...
<div><p>Remote identification and mapping of canopy tree species can contribute valuable information...
Leaf mass per area (LMA) is a trait of central importance to plant physiology and ecosystem function...
Remote sensing provides a consistent form of observation for biodiversity monitoring across space an...
Quantitative remote sensing of leaf traits offers an opportunity to track biodiversity changes from ...
Remote identification and mapping of canopy tree species can contribute valuable information towards...
Imaging spectroscopy is a powerful tool for mapping chemical leaf traits at the canopy level. Howeve...
High-resolution spectroscopy can be used to measure leaf chemical and structural traits. Such leaf t...
This study created and tested predictive models developed using airborne imaging spectrometer and li...
Spatial information on forest functional composition is needed to inform management and conservation...
Airborne high fidelity imaging spectroscopy (HiFIS) holds great promise for bridging the gap between...
Imaging spectroscopy is currently the best approach for continuously mapping forest canopy traits, w...
Monitoring the responses of leaf functional traits and vegetation structure to environmental change ...
Plant functional traits have been extensively used to describe, rank and discriminate species accord...
Tropical forest ecosystems are undergoing rapid transformation as a result of changing environmental...
Monitoring biodiversity is essential for the conservation and management of forest resources. A meth...
<div><p>Remote identification and mapping of canopy tree species can contribute valuable information...
Leaf mass per area (LMA) is a trait of central importance to plant physiology and ecosystem function...
Remote sensing provides a consistent form of observation for biodiversity monitoring across space an...
Quantitative remote sensing of leaf traits offers an opportunity to track biodiversity changes from ...
Remote identification and mapping of canopy tree species can contribute valuable information towards...
Imaging spectroscopy is a powerful tool for mapping chemical leaf traits at the canopy level. Howeve...
High-resolution spectroscopy can be used to measure leaf chemical and structural traits. Such leaf t...
This study created and tested predictive models developed using airborne imaging spectrometer and li...