Estimation of the vegetation contribution to the 1·65/2·22 μm ratio in airborne thematic-mapper imagery of the Virginia Range, Nevada
- 1 January 1985
- journal article
- research article
- Published by Taylor & Francis in International Journal of Remote Sensing
- Vol. 6 (1) , 75-88
- https://doi.org/10.1080/01431168508948425
Abstract
Previous investigations have successfully used the 1·65/2·22μm ratio to map the concentration of hydroxyl-bearing minerals in imagery of sparsely vegetated terrain. However, difficulties arise in applying this ratio to semiarid regions where there is a wide variation in vegetation density. Besides mapping the mineralogic features of interest, the 1·65/2·22μm ratio also maps the density of vegetation by responding to leaf water content. A technique has been developed to estimate the vegetation contribution to this ratio based on the near-IR/red ratio. The technique has proved useful in mapping supergene alteration in the Virginia Range, NevadaKeywords
This publication has 9 references indexed in Scilit:
- The relationships between the chlorophyll concentration, LAI and reflectance of a simple vegetation canopyInternational Journal of Remote Sensing, 1983
- Quantitative relationships of near-surface spectra to Landsat radiometric dataRemote Sensing of Environment, 1980
- Alteration mapping with airborne multispectral scannersEconomic Geology, 1980
- Near‐infrared (1.3–2.4) μm spectra of alteration minerals—Potential for use in remote sensingGeophysics, 1979
- Spectra of altered rocks in the visible and near infraredEconomic Geology, 1979
- Red and photographic infrared linear combinations for monitoring vegetationRemote Sensing of Environment, 1979
- SPECTRAL SIGNATURES OF PARTICULATE MINERALS IN THE VISIBLE AND NEAR INFRAREDGeophysics, 1977
- Mapping of hydrothermal alteration in the Cuprite mining district, Nevada, using aircraft scanner images for the spectral region 0.46 to 2.36µmGeology, 1977
- Vegetation and Plant Growth as Affected by Chemically Altered Rocks in the Western Great BasinEcology, 1950