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  5. Combining satellite and field data reveals Congo's forest types structure, functioning and composition.

Combining satellite and field data reveals Congo's forest types structure, functioning and composition.

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Remote_Sens_Ecol_Conserv_-_2024_-_Picard_-_Combining_satellite_and_field_data_reveals_Congo_s_forest_types_structure_.pdf

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Resource type
Journal article
Creator (person)
Picard, Juliette
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Nungi‐Pambu Dembi, Maïalicah M.
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Barbier, Nicolas
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Cornu, Guillaume
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Couteron, Pierre
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Forni, Eric
Gibbon, Gwili
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Lim, Felix
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Ploton, Pierre
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Pouteau, Robin
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Tresson, Paul
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van Loon, Tom
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Viennois, Gaëlle
Réjou‐Méchain, Maxime
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Date published
October 11, 2024
Abstract
Tropical moist forests are not the homogeneous green carpet often illustrated in maps or considered by global models. They harbour a complex mixture of forest types organized at different spatial scales that can now be more accurately mapped thanks to remote sensing products and artificial intelligence. In this study, we built a large‐scale vegetation map of the North of Congo and assessed the environmental drivers of the main forest types, their forest structure, their floristic and functional compositions and their faunistic composition. To build the map, we used Sentinel‐2 satellite images and recent deep learning architectures. We tested the effect of topographically determined water availability on vegetation type distribution by linking the map with a water drainage depth proxy (HAND, height above the nearest drainage index). We also described vegetation type structure and composition (floristic, functional and associated fauna) by linking the map with data from large inventories and derived from satellite images. We found that water drainage depth is a major driver of forest type distribution and that the different forest types are characterized by different structure, composition and functions, bringing new insights about their origins and successional dynamics. We discuss not only the crucial role of soil–water depth, but also the importance of consistently reproducing such maps through time to develop an accurate monitoring of tropical forest types and functions, and we provide insights on peculiar forest types (Marantaceae forests and monodominant forests) on which future studies should focus more. Under the current context of global change, expected to trigger major forest structural and compositional changes in the tropics, an appropriate monitoring strategy of the spatio‐temporal dynamics of forest types and their associated floristic and faunistic composition would considerably help anticipate detrimental shifts.
Funder
Funder nameAwards
Agence Nationale de la Recherche, France
DESSFOR project (ANR-20-CE32-0010)
Journal title
Remote Sensing in Ecology and Conservation
Article number
rse2.419
Publisher
Published by John Wiley & Sons Ltd on behalf of Zoological Society of London.
ISSN
2056-3485
eISSN
2056-3485
Date accepted
August 12, 2024
Official URL
https://doi.org/10.1002/rse2.419
Rights statement
In Copyright
Licence
https://creativecommons.org/licenses/by-nc-nd/4.0/
DOI
10.1002/rse2.419
Keywords
North Congo
Satellite data
Deep learning
Vegetation map
Tropical forests
Water drainage depth
Congo
Additional information
IF = 5.787 (2023-2024)
Managed by the British Library and supported by the AHRC

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