Optimizing growth efficiency and energy economics in vertical farming through dynamic reduction of blue light in lettuce baby leaf (<i>Lactuca sativa L</i>.). [PDF]
Jadhav V +7 more
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Improved Cultivars and the Application of Combined Fertilizer Improve the Grain Yield and the Nitrogen Uptake and Utilization in Continuously Cropped Soybean (<i>Glycine max</i> (L.) Merr.). [PDF]
Liu W, Rao D, Xie F, Wang H, Yao X.
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Data to support the modelling of integrated groundwater-surface water flow in permafrost regions, using the Carcajou Watershed, Northwest Territories, Canada. [PDF]
Bunn MI +5 more
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Research on maize growth simulation and organ morphology co-modeling driven by multimodal data fusion. [PDF]
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Source-sink relationship in <i>Brassica carinata</i> derived <i>Brassica juncea</i> introgression lines for improving water use efficiency under moisture deficit stress conditions. [PDF]
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Assessment of PlanetScope Spectral Data for Estimation of Peanut Leaf Area Index Using Machine Learning and Statistical Methods. [PDF]
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Retrieving Leaf Area Index From Landsat Using MODIS LAI Products and Field Measurements
IEEE Geoscience and Remote Sensing Letters, 2014Land surface models that operate at multiple spatial resolutions require consistent leaf area index (LAI) inputs at each scale. In order to produce LAI from Landsat imagery that is consistent with the Moderate Resolution Imaging Spectroradiometer (MODIS) LAI product and with in situ measurements, an improved regression tree mapping approach has been ...
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Review of methods for in situ leaf area index (LAI) determination
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Estimation of leaf area index (LAI) using POLInSAR: Preliminary research
2011 IEEE International Geoscience and Remote Sensing Symposium, 2011Polarimetric interferometric synthetic aperture radar (POLInSAR) has been used to extract the forest height successfully. Leaf area index (LAI) is an important parameter for the estimation of forest biomass, however presently the most of LAI extraction approaches are based on optical data.
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A sensitivity analysis of a surface energy balance model to LAI (Leaf Area Index)
SPIE Proceedings, 2008The LAI is a key parameter in hydrological processes, especially in the physically based distribution models. It is a critical ecosystem attribute since physiological processes such as photosynthesis, transpiration and evaporation depend on it. The diffusion of water vapor, momentum, heat and light through the canopy is regulated by the distribution ...
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