Scinovex
articleTop 10% cited

Remote estimation of chlorophyll content in higher plant leaves

International Journal of Remote Sensing · 1997 · Vol. 18(12) · pp. 2691–2697
Anatoly A. GitelsonMark N. Merzlyak

Abstract

Abstract Indices for the non-destructive estimation of chlorophyll content were formulated using various instruments to measure reflectance and absorption spectra in visible and near-infrared ranges, as well as chlorophyll contents from several non-related species from different climatic regions. The proposed new algorithms are simple ratios between percentage reflectance at spectral regions that are highly sensitive (540 to 630nm and around 700nm) and insensitive (nearinfrared) to variations in chlorophyll content: R NIR / R 700 and R NIR / R 550. The developed algorithms predicting leaf chemistry from the leaf optics were validated for nine plant species in the range of chlorophyll content from 0.27 to 62.9mug cm -2. An error of less than 4.2 mugcm -2 in chlorophyll prediction was achieved. The use of green and red (near 700nm) channels increases the sensitivity of NDVI to chlorophyll content by about five-fold.

Leaf Properties and Growth MeasurementRemote Sensing in AgricultureSpectroscopy and Chemometric AnalysesChlorophyllRemote sensingAbsorption (acoustics)ReflectivityNear-infrared spectroscopyChlorophyll aContent (measure theory)Environmental scienceSpectral lineChemistry
Citations
917
FWCI
9.56
field-weighted impact
References
7
Percentile
98%
vs. same field & year
Citations per year
Cited by
Estimating Corn Leaf Chlorophyll Concentration from Leaf and Canopy Reflectance
Remote Sensing of Environment · 2000 · 2,449 citations
Hyperspectral remote sensing of plant pigments
Journal of Experimental Botany · 2006 · 706 citations
Novel algorithms for remote estimation of vegetation fraction
Remote Sensing of Environment · 2002 · 2,088 citations
References
Ratios of leaf reflectances in narrow wavebands as indicators of plant stress
International Journal of Remote Sensing · 1994 · 761 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.