articleTop 1% cited
Satellite remote sensing of primary production
International Journal of Remote Sensing · 1986 · Vol. 7(11) · pp. 1395–1416
Compton J. Tucker✉(Goddard Space Flight Center)P. J. Sellers(Goddard Space Flight Center)
Abstract
Abstract Leaf structure and function are shown to result in distinctive variations in the absorption and reflection of solar radiation from plant canopies. The leaf properties that determine the radiation-interception characteristics of plant canopies are directly linked to photosynthesis, stomatal resistance and evapotran-spiration and can be inferred from measurements of reflected solar energy. The effects of off-nadir viewing and atmospheric constituents, coupled with the need to measure changing surface conditions, emphasize the need for multitemporal measurements of reflected radiation if primary production is to be estimated
Remote Sensing in AgriculturePlant Water Relations and Carbon DynamicsLeaf Properties and Growth MeasurementRemote sensingEnvironmental scienceSatellitePhotosynthetically active radiationInterceptionRadiationPhotosynthesisPrimary productionAtmospheric sciencesPrimary (astronomy)
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References
Characteristics of maximum-value composite images from temporal AVHRR data
International Journal of Remote Sensing · 1986 · 2,991 citations
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Remote Sensing of Environment · 1970 · 1,298 citations
Canopy reflectance, photosynthesis and transpiration
International Journal of Remote Sensing · 1985 · 2,309 citations
Spectral Properties of Plants
Applied Optics · 1965 · 1,408 citations
Vegetation and the atmosphere
Biological Conservation · 1976 · 825 citations
Encyclopedia of plant physiology
Archives of Biochemistry and Biophysics · 1960 · 1,244 citations
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