OSUNA
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A new approach to mapping based on an optical model was developed and used from hyperspectral aerial images to determine the biofilm microphytobenthos and estimate their biomass in confined mudflats
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A new approach to mapping based on an optical model was developed and used from hyperspectral aerial images to determine the biofilm microphytobenthos and estimate their biomass in confined mudflats here in the Loire estuary in 2011.
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A new approach to mapping based on an optical model was developed and used from hyperspectral aerial images to determine the biofilm microphytobenthos and estimate their biomass in confined mudflats here in the Bay of Bourgneuf in may 2010.
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A new approach to mapping based on an optical model was developed and used from hyperspectral aerial images to determine the biofilm microphytobenthos and estimate their biomass in confined mudflats here in the Bay of Bourgneuf in 2009.
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A new approach to mapping based on an optical model was developed and used from hyperspectral aerial images to determine the biofilm microphytobenthos and estimate their biomass in confined mudflats here in the Loire estuary in 2010.
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A new approach to mapping based on an optical model was developed and used from hyperspectral aerial images to determine the biofilm microphytobenthos and estimate their biomass in confined mudflats here in the Bay of Bourgneuf in 2002.
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A new approach to mapping based on an optical model was developed and used from hyperspectral aerial images to determine the biofilm microphytobenthos and estimate their biomass in confined mudflats here in the Bay of Bourgneuf in 2011 september.
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A new approach to mapping based on an optical model was developed and used from hyperspectral aerial images to determine the biofilm microphytobenthos and estimate their biomass in confined mudflats here in the Bay of Bourgneuf in 2013 september.
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A new approach to mapping based on an optical model was developed and used from hyperspectral aerial images to determine the biofilm microphytobenthos and estimate their biomass in confined mudflats here in the Bay of Bourgneuf in 2010 september.
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Exploring the feasibility of monitoring the evolution of the spatial distribution of intertidal eelgrass from multispectral images combined with measures spectroradiometric land in confined areas. This spatial distribution for the amount of intertidal eelgrass present through the calculation of a vegetation index . This vegetation index can then be connected to the biomass.