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Red edge spectral measurements from sugar maple leaves

International Journal of Remote Sensing · 1993 · Vol. 14(8) · pp. 1563–1575
James E. VogelmannB. N. RockDavid M. Moss

Abstract

Abstract Many sugar maple stands in the northeastern United States experienced extensive insect damage during the 1988 growing season. Chlorophyll data and high spectral resolution spectrometer laboratory reflectance data were acquired for multiple collections of single detached sugar maple leaves variously affected by the insect over the 1988 growing season. Reflectance data indicated consistent and diagnostic differences in the red edge portion (680-750 nm) of the spectrum among the various samples and populations of leaves. These included differences in the red edge inflection point (REIP), a ratio of reflectance at 740-720 nm (RE3/RE2), and a ratio of first derivative values at 715-705 nm (D715/D705), All three red edge parameters were highly correlated with variation in total chlorophyll content. Other spectral measures, including the Normalized Difference Vegetation Index (NDVI) and the Simple Vegetation Index Ratio (VI), also varied among populations and over the growing season, but did not correlate well with total chlorophyll content. Leaf stacking studies on light and dark backgrounds indicated REIP, RE3/RE2 and D715/D705 to be much less influenced by differences in green leaf biomass and background condition than either NDVI or VI.

Remote Sensing in AgricultureLeaf Properties and Growth MeasurementPlant Water Relations and Carbon DynamicsRed edgeSugarMapleNormalized Difference Vegetation IndexChlorophyllGrowing seasonVegetation (pathology)HorticultureEnvironmental scienceBotany
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References
The red edge of plant leaf reflectance
International Journal of Remote Sensing · 1983 · 1,166 citations
Analysis of the phenology of global vegetation using meteorological satellite data
International Journal of Remote Sensing · 1985 · 1,109 citations
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