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Remote estimation of leaf area index and green leaf biomass in maize canopies

Geophysical Research Letters · 2003 · Vol. 30(5)
Anatoly A. GitelsonAndrés ViñaTimothy J. ArkebauerDonald C. RundquistGalina KeydanBryan Leavitt

Abstract

Leaf area index (LAI) is an important variable for climate modeling, estimates of primary production, agricultural yield forecasting, and many other diverse studies. Remote sensing provides a considerable potential for estimating LAI at local to regional and global scales. Several spectral vegetation indices have been proposed, but their capacity to estimate LAI is highly reduced at moderate‐to‐high LAI. In this paper, we propose a technique to estimate LAI and green leaf biomass remotely using reflectances in two spectral channels either in the green around 550 nm, or at the red edge near 700 nm, and in the NIR (beyond 750 nm). The technique was tested in agricultural fields under a maize canopy, and proved suitable for accurate estimation of LAI ranging from 0 to more than 6.

Remote Sensing in AgricultureLeaf Properties and Growth MeasurementUrban Heat Island MitigationLeaf area indexCanopyEnvironmental scienceRemote sensingBiomass (ecology)Red edgeVegetation (pathology)Yield (engineering)Atmospheric sciencesAgronomy

Funding

  • U.S. Department of Energy
  • University of Nebraska-Lincoln
  • Office of Science
  • Office of Experimental Program to Stimulate Competitive Research
Citations
832
FWCI
5.41
field-weighted impact
References
17
Percentile
96%
vs. same field & year
Citations per year
Cited by
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Geophysical Research Letters · 2005 · 1,564 citations
References
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IEEE Transactions on Geoscience and Remote Sensing · 1995 · 1,200 citations
Estimation of global leaf area index and absorbed par using radiative transfer models
IEEE Transactions on Geoscience and Remote Sensing · 1997 · 1,023 citations
Novel algorithms for remote estimation of vegetation fraction
Remote Sensing of Environment · 2002 · 2,088 citations
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