A narrow-waveband spectral index that tracks diurnal changes in photosynthetic efficiency
暂无分享,去创建一个
[1] C. Field,et al. Responses of photosynthesis and carbohydrate-partitioning to limitations in nitrogen and water availability in field-grown sunflower , 1991 .
[2] Barbara Demmig-Adams,et al. Carotenoids and photoprotection in plants : a role for the xanthophyll zeaxanthin , 1990 .
[3] J. Dungan,et al. An image recorded by the Airborne Visible/Infrared Imaging Spectrometer (AVIRIS) , 1990 .
[4] W. Bilger,et al. Light-induced spectral absorbance changes in relation to photosynthesis and the epoxidation state of xanthophyll cycle components in cotton leaves. , 1989, Plant physiology.
[5] G. Russell,et al. Plant Canopies: Their Growth, Form and Function: Absorption of radiation by canopies and stand growth , 1989 .
[6] Ramakrishna R. Nemani,et al. Relating seasonal patterns of the AVHRR vegetation index to simulated photosynthesis and transpiration of forests in different climates , 1988 .
[7] N. Goel. Models of vegetation canopy reflectance and their use in estimation of biophysical parameters from reflectance data , 1988 .
[8] P. Sellers. Canopy reflectance, photosynthesis, and transpiration. II. the role of biophysics in the linearity of their interdependence , 1987 .
[9] J. Tenhunen. Plant response to stress : functional analysis in Mediterranean ecosystems , 1987 .
[10] W. Verhoef. Light scattering by leaf layers with application to canopy reflectance modeling: The Scattering by Arbitrarily Inclined Leaves (SAIL) model , 1984 .
[11] C. Tucker. Red and photographic infrared linear combinations for monitoring vegetation , 1979 .
[12] J. Monteith. Climate and the efficiency of crop production in Britain , 1977 .