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Title
Mesures physiques et signatures en télédétection

298
Goel N.S., Thompson Ri., 1984. Inversion of vegetation canopy reflectance models for estimating agronomic
variables. IV. Total inversion of the SAIL model. Remote Sens. Environ., 15:237-253.
Goldberg D.E., 1989. Genetic Algorithms in search, optimization and machine learning. Addison-Wesley (New
York), 412 pp.
Jacquemoud S„ Baret F„ 1990. PROSPECT: A model of leaf optical properties. Remote Sens. Environ., 34:75-
91.
Jacquemoud S., 1993. Inversion of the PROSPECT+SAIL canopy reflectance model from AVIRIS equivalent
spectra: theoretical study. Remote Sens. Environ., 44:281-292.
Kuusk A., 1991a. Determination of vegetation canopy parameters from optical measurements. Remote Sens.
Environ., 37:207-218.
Kuusk A., 1991b. The hot spot effect in plant canopy reflectance. In: Photon-vegetation interactions.
Application in optical remote sensing and plant ecology (Myneni and Ross, Eds), Springer, pp. 139-159.
Kuusk A., 1994. A multispectral canopy reflectance model. Remote Sens. Environ., in press.
Marquardt D.W., 1963. An algorithm for least-squares estimation of nonlinear parameters. J. Soc. Appl. Math.,
11(2):431-441.
Looyen W J., Dekker A.G., 1991. CAESAR: an example of a versatile multispectral CCD pushbroom scanner
using (non) imaging spectrometry results. EARSeL Adv. Remote Sens., 1(1): 101-108.
Nelder J.A., Mead R.A., 1965. A simplex method for function optimization. Comput. J., 7:308-313.
Otterman J., 1990. Inferring parameters for canopies nonumiform in azimuth by model inversion. Remote
Sens. Environ., 33:41-53.
Pinty B., Verstraete M.M., Dickinson R.E., 1990. A physical model of the bidirectional reflectance of
vegetation canopies. 2. Inversion and validation. J. Geophys. Res., 95(D8): 11767-11775.
Pinty B., Verstraete M.M., 1992. On the design and validation of surface bidirectional reflectance and albedo
models. Remote Sens. Environ., 41:155-167.
Renders J.M., Fiasse S.P., Verstraete M.M., Nordvik J.P., 1992. A comparative study of optimization methods
for the retrieval of quantitative information from satellite data. C ommis sion of the European
Communities, Joint Research Centre, EUR 14851 EN, Ispra (Italy), 25 pp.
Roux C„ Tomassone R., 1973. Moindres carrés non linéaires (HAUS59). Note interne 73 / 20, INRA
Département de Biométrie, Jouy-en-Josas (France).
Schmuck G., Verdebout J., Ustin S.L., Sieber A.J., Jacquemoud S., 1993. Vegetation and biochemical indices
retrieved from a multitemporal AVIRIS data set. In Proc. 25 th Int. Symp. Remote S ensing and Global
Environment Change, Graz (Austria), 4-8 April 1993 (in press).
Thom R., 1983. Paraboles et catastrophes. Fl amm arion, Paris.
Verhoef W.. 1984. Light scattering by leaf layers with application to canopy reflectance modeling: the SAIT,
model. Remote. Sens. Environ., 16:125-141.
Verhoef W„ 1985. Earth observation modeling based on layer scattering matrices. Remote Sens. Environ.,
17:165-178.