Canopy reflectance, photosynthesis, and transpiration. III. A reanalysis using improved leaf models and a new canopy integration scheme.
P. J. Sellers, F. G. HALL(Goddard Space Flight Center), Christopher B. Field(Stanford University), G. J. Collatz(Carnegie Institution for Science), Joseph A. Berry(Carnegie Institution for Science)
Cited by 953
Related Papers
On the Relationship Between Carbon Isotope Discrimination and the Intercellular Carbon Dioxide Concentration in Leaves
|Australian Journal of Plant Physiology|1982|3.9k
Photosynthetic Response and Adaptation to Temperature in Higher Plants
|Annual Review of Plant Physiology|1980|3k
A Model Predicting Stomatal Conductance and its Contribution to the Control of Photosynthesis under Different Environmental Conditions
|Unknown|1987|2.6k
Physiological and environmental regulation of stomatal conductance, photosynthesis and transpiration: a model that includes a laminar boundary layer
|Agricultural and Forest Meteorology|1991|2.4k