Publication: Diversity of 3D APAR and LAI dynamics in broadleaf and coniferous forests: Implications for the interpretation of remote sensing-based products
Diversity of 3D APAR and LAI dynamics in broadleaf and coniferous forests: Implications for the interpretation of remote sensing-based products
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Kesselring, J., Morsdorf, F., Kükenbrink, D., Gastellu-Etchegorry, J.-P., & Damm, A. (2024). Diversity of 3D APAR and LAI dynamics in broadleaf and coniferous forests: Implications for the interpretation of remote sensing-based products. Remote Sensing of Environment, 306, 114116. https://doi.org/10.1016/j.rse.2024.114116
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Forests substantially mediate the water and carbon dioxide exchanges between terrestrial ecosystems and the atmosphere. The rate of this exchange, including evapotranspiration (ET) and gross primary production (GPP), depends mainly on the underlying vegetation type, health state, and the composition of abiotic environmental drivers. However, the complex 3D structure of forest canopies and the inherent top-view perspective of optical and thermal remote sensing complicate remote sensing-based retrievals of biotic and abiotic factors tha
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Kesselring, J., Morsdorf, F., Kükenbrink, D., Gastellu-Etchegorry, J.-P., & Damm, A. (2024). Diversity of 3D APAR and LAI dynamics in broadleaf and coniferous forests: Implications for the interpretation of remote sensing-based products. Remote Sensing of Environment, 306, 114116. https://doi.org/10.1016/j.rse.2024.114116