Ecological fingerprinting of ecosystem succession: Estimating secondary tropical dry forest structure and diversity using imaging spectroscopy
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posted on 2023-02-06, 01:26 authored by M Kalacska, G A Sanchez-Azofeifa, B Rivard, Terry Caelli, H P White, J C Calvo-AlvaradoWe evaluated the use of EO-1 Hyperion hyperspectral satellite imagery for mapping structure and floristic diversity in a Neotropical tropical dry forest as a way of assessing a region's ecological fingerprint. Analysis of satellite imagery provides a means to spatially appraise the dynamics of the structure and diversity of the forest. We derived optimal models for mapping canopy height, live aboveground biomass, Shannon diversity, basal area and the Holdridge Complexity Index from a dry season image. None of the evaluated models adequately estimated stem or species density. Due to the dynamic nature of the leaf phenology we found that for the application of remote sensing in Neotropical dry forests, the spectro-temporal domain (changes in the spectral signatures over time-season) must be taken into account when choosing imagery. The analyses and results presented here provide a means for rapid spatial assessment of structure and diversity characteristics from the microscale site level to an entire region. © 2006 Elsevier Inc. All rights reserved.
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Remote Sensing of EnvironmentVolume
108Pagination
82 - 96Publisher DOI
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0034-4257Usage metrics
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Science & TechnologyLife Sciences & BiomedicineTechnologyEnvironmental SciencesRemote SensingImaging Science & Photographic TechnologyEnvironmental Sciences & Ecologytropical dry forestHoldridge Complexity Indexstructurebiomasshyperspectral remote sensingCosta Ricawavelet decompositionhyperionneural networkLEAF-AREA INDEXANISOTROPIC REFLECTANCE FLAIR4-SCALE LINEAR-MODELOPTICAL-PROPERTIESLAND-COVERSPECTRAL REFLECTANCEHYPERSPECTRAL DATASATELLITE IMAGERYSPECIES RICHNESSPLANT CANOPIES
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