Full text: Mesures physiques et signatures en télédétection

DEKKER (1), A. G. (1 ), HOOGENBOOM (I), H. J. (1), GODDIJN (1), 
L. M. and MALTHUS (2), T. J. M. 
( 1 ) Institute for environmental Studies, Vrije Universiteit, Amsterdam, The Netherlands. 
(2) Sch. of Applied Sciences, University of Wolverhampton, Wulfrunastreet, Wolverhampton, UK 245 
Indices spectraux pour la télédétection de la dégradation des milieux naturels en Tunisie aride 
R. ESCADAFAL (Orstom, El Menzah, Tunisie) 
A. BELGHITH et H. BEN MOUSSA (CNT, Tunis, Tunisie) 253 
Forest Canopy Chemistry with High Spectral Resolution, 
an evaluation of the atmospheric influence 
J.-P. GASTELLU-ETCHEGORRY (I), F. ZAGOLSKI (1), E. MOUGIN (1), 
G. MARTY (I), P. DUBUISSON (2) 
(1) Centre d’Etudes Spatiales des Rayonnements, CNRS - UPS, Toulouse 
(2) Laboratoire d'Optique Atmosphérique, CNRS - USTL, Villeneuve-d’Ascq 261 
High spectral resolution spectroscopy for monitoring com growth at efeda site (Spain) 
M.-A. GILABERT and J. MELIA (Departament de Termodinàmica, Facultat de fisica, 
Universität de València, Burjassot, Valencia, Spain) 269 
Signature analysis of relflectance spectra and its application for remote observations 
of the phytoplankton distribution in lake kinneret 
A. GITELSON (I), M. MAYO (2) and Y. YACOBI (3) 
(1) Ben-Gurion University of the Negev, Sede-Boker Campus, Israel 
(2) Depart, of Geophysics and Planetary Sciences, Tel-Aviv University, Israel 
(3) Israel Oceanographic and Limnological Research, Kinneret Limnological Laboratory 277 
Limites de l’utilisation de la haute résolution spectrale et des paramètres spectraux, 
dans le visible et le proche infrarouge, pour l’étude de la végétation 
M.-C. GUENEGOU, J.-E. LEVASSEUR (URA - CNRS 696, Université de Rennes, France) 
C. ANSSEAU, C. PALMIER (Université de Sherbrooke, Département de Biologie 
et CARTEL, Sherbrooke, Québec, Canada), C. LOISEL (ENITIAA, Nantes, France), 
M.-F. COUREL ( IM A GEO/CNRS, Paris, France) 285 
Comparison of several optimization methods to extract canopy biophysical parameters, 
Application to caesar data 
S. JACQUEMOUD (I), J. VERDEBOUT (1), G. SCHMUCK (I), S. FLASSE (2) 
(Joint Research Centre, Institute for Remote Sensing Applications) ( 1) Advanced Techniques 
(2) Monitoring Tropical Vegetation, Ispra, Va, Italy 291 
The use of high spectral resolution bands for estimating absorbed photosynthetically 
active radiation (A pa r) 
MOON S. KIM (I), C.S.T. DAUGHTRY (2), E.W. CHAPPELLE (3), 
J.E. McMURTREY (2) and C.L. WALTHALL (I) 
( I ) Laboratory for global Remote Sensing Studies, Department of Geography, 
University o f Maryland, College Park. (2) Remote Sensing Research Laboratory, ARS, United 
States Department of Agriculture, Beltsville. (3) Laboratory for Terrestrial Physics, 
NASA/Goddard space Flight Center, Greenbelt 299 
Towards remote mapping of estuarine sediment types and salt marsh vegetation 
using high spectral resolution 
J.-M.-M. KOKKE (Ministry of Transport, Public Works and Water Management, Survey 
Department of Rijkswaterstaat, The Netherlands), S VAN ZANTEN (Free University, Faculty 
of Biology, Department of Ecology and Ecotoxocology, Amsterdam, The Netherlands) 307 
Remote sensing contribution to the study of surface radiative parameters in the efeda area 
E. LOPEZ-BAEZA and J. MELIA (Remote Sensing Unit. Faculty or Physics. 
University of Valencia, Burjassot, Valencia, Spain) 317 
Neural networks, Cross-correlation and Parameterisation : a comparison of approaches to 
mineralogical mapping using imaging spectrometer data 
S. MACKIN and S.-A. BRIGGS (British National Space Centre, RSADU, ITE Monkswood, 
Abbots Ripton, Cambridgeshire) G. SIMPSON (Earth Observation Sciences, 
Broadmede, Farnham Business Park, Farnham, Surrey) 331 
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