380
Féret J-B, Gitelson AA, Noble SD, Jacquemoud S (2017) PROSPECT-D: towards modeling leaf
optical properties through a complete lifecycle. Remote Sens Environ 193:204–215
Field CB (1983) Allocating leaf nitrogen for the maximization of carbon gain – leaf age as a control on the allocation program. Oecologia 56:341–347
Field CB, Mooney H (1986) The photosynthesis – nitrogen relationship in wild plants. In: Givinsh
TJ (ed) On the economy of form and function. Cambridge University Press, Cambridge,
pp 25–55
Filella I, Serrano L, Serra J, Peñuelas J (1994) Evaluating wheat nitrogen status with canopy reflectance indices and discriminant analysis. Crop Sci 35:1400–1405
Fukshansky L, Martinez V, Remisowsky A, McClendon J, Ritterbusch A, Richter T et al (1993)
Absorption spectra of leaves corrected for scattering and distributional error: a radiative transfer and absorption statistics treatment. Photochem Photobiol 57:538–555
Gamon JA, Peñuelas J, Field CB (1992) A narrow-waveband spectral index that tracks diurnal
changes in photosynthetic efficiency. Remote Sens Environ 41:35–44
Gamon JA, Kovalchuck O, Wong CYS, Harris A, Garrity SR (2015) Monitoring seasonal and diurnal changes in photosynthetic pigments with automated PRI and NDVI sensors. Biogeosciences
12:4149–4159
Gatellu-Etchegorry JP, Bruniquel-Pinel V (2001) A modeling approach to assess the robustness of
spectrometric predictive equations for canopy chemistry. Remote Sens Environ 76:1–15
Gates DM, Keegan HJ, Schleter JC, Weidner VR (1965) Spectral properties of plants. Appl
Opt 4:11–20
Gausman HW (1974) Leaf reflectance of near-infrared. Photogramm Eng 40:183–191
Gitelson AA (2012) Nondestructive estimation of foliar pigment (chlorophylls, carotenoids, and
anthocyanins) contents: evaluating a semi analytical three-band model. In Thenkabail PS, Lyon
JG, Huete A (eds) Hyperspectral remote sensing of vegetation. CRC Press-Taylor and Francis
Group, Boca Raton; p 141–165
Gras EK, Read J, Mach CT, Sanson GD, Clissold FJ (2005) Herbivore damage, resource richness
and putative defenses in juvenile versus adult Eucalyptus leaves. Aust J Bot 53:33–44
Haberlandt G (1914) Physiological plant anatomy. Perception of light. Macmillan and Co., London
Hale GM, Querry MR (1973) Optical constants of water in the 200nm to 200μm wavelength
region. Appl Opt 12:555–563
Hamilton WD, Brown SP (2001) Autumn tree colours as a handicap signal. Proc Royal Soc B-Biol
Sci 286(1475):1489–1493
Hannoufa A, Houssain Z (2012) Regulation of carotenoid accumulation in plants. Biocatal Agric
Biotechnol 1(3):198–202
Hosgood B, Jacquemoud S, Andreoli G, Verdebout J, Pedrini G et al (1995) Leaf Optical properties
EXperiment 93 (LOPEX93) report EUR-16095-EN. European Commission, Joint Research
Centre, Institute for Remote Sensing Applications, Ispra
Hrazdina G, Wagner GJ, Siegelman HW (1978) Subcellular localization of enzymes of anthocyanin biosynthesis in protoplasts. Phytochemistry 17:53–56
Jacquemoud S, Ustin S (2008) Modeling leaf optical properties. Photobiological Sciences Online.
Environmental Photobiology. http://www.photobiology.info/#Environ. Accessed 27 Nov 2018
Jacquemoud S, Bacour C, Poilvé H, Frangi J-P (2000) Comparison of four radiative transfer models to simulate plant canopies reflectance: direct and inverse models. Remote Sens Environ
74:471–481
Jacquemoud S, Verhoef W, Baret F, Bacour C, Zarco-Tejada PJ et al (2009) PROSPECT + SAIL
models: a review of use for vegetation characterization. Remote Sens Environ 113(S1):S56–S66
James SA, Bell DT (2000) Leaf orientation, light interception and stomatal conductance of
Eucalyptus globulus ssp. globulus leaves. Tree Physiol 20:815–823
Junker LV, Ensminger I (2016) Fast detection of leaf pigments and isoprenoids for ecophysiological studies, plant phenotyping and validating remote–sensing of vegetation. Physiol Planta
158:369–381
S. L. Ustin and S. Jacquemoud
Féret J-B, Gitelson AA, Noble SD, Jacquemoud S (2017) PROSPECT-D: towards modeling leaf
optical properties through a complete lifecycle. Remote Sens Environ 193:204–215
Field CB (1983) Allocating leaf nitrogen for the maximization of carbon gain – leaf age as a control on the allocation program. Oecologia 56:341–347
Field CB, Mooney H (1986) The photosynthesis – nitrogen relationship in wild plants. In: Givinsh
TJ (ed) On the economy of form and function. Cambridge University Press, Cambridge,
pp 25–55
Filella I, Serrano L, Serra J, Peñuelas J (1994) Evaluating wheat nitrogen status with canopy reflectance indices and discriminant analysis. Crop Sci 35:1400–1405
Fukshansky L, Martinez V, Remisowsky A, McClendon J, Ritterbusch A, Richter T et al (1993)
Absorption spectra of leaves corrected for scattering and distributional error: a radiative transfer and absorption statistics treatment. Photochem Photobiol 57:538–555
Gamon JA, Peñuelas J, Field CB (1992) A narrow-waveband spectral index that tracks diurnal
changes in photosynthetic efficiency. Remote Sens Environ 41:35–44
Gamon JA, Kovalchuck O, Wong CYS, Harris A, Garrity SR (2015) Monitoring seasonal and diurnal changes in photosynthetic pigments with automated PRI and NDVI sensors. Biogeosciences
12:4149–4159
Gatellu-Etchegorry JP, Bruniquel-Pinel V (2001) A modeling approach to assess the robustness of
spectrometric predictive equations for canopy chemistry. Remote Sens Environ 76:1–15
Gates DM, Keegan HJ, Schleter JC, Weidner VR (1965) Spectral properties of plants. Appl
Opt 4:11–20
Gausman HW (1974) Leaf reflectance of near-infrared. Photogramm Eng 40:183–191
Gitelson AA (2012) Nondestructive estimation of foliar pigment (chlorophylls, carotenoids, and
anthocyanins) contents: evaluating a semi analytical three-band model. In Thenkabail PS, Lyon
JG, Huete A (eds) Hyperspectral remote sensing of vegetation. CRC Press-Taylor and Francis
Group, Boca Raton; p 141–165
Gras EK, Read J, Mach CT, Sanson GD, Clissold FJ (2005) Herbivore damage, resource richness
and putative defenses in juvenile versus adult Eucalyptus leaves. Aust J Bot 53:33–44
Haberlandt G (1914) Physiological plant anatomy. Perception of light. Macmillan and Co., London
Hale GM, Querry MR (1973) Optical constants of water in the 200nm to 200μm wavelength
region. Appl Opt 12:555–563
Hamilton WD, Brown SP (2001) Autumn tree colours as a handicap signal. Proc Royal Soc B-Biol
Sci 286(1475):1489–1493
Hannoufa A, Houssain Z (2012) Regulation of carotenoid accumulation in plants. Biocatal Agric
Biotechnol 1(3):198–202
Hosgood B, Jacquemoud S, Andreoli G, Verdebout J, Pedrini G et al (1995) Leaf Optical properties
EXperiment 93 (LOPEX93) report EUR-16095-EN. European Commission, Joint Research
Centre, Institute for Remote Sensing Applications, Ispra
Hrazdina G, Wagner GJ, Siegelman HW (1978) Subcellular localization of enzymes of anthocyanin biosynthesis in protoplasts. Phytochemistry 17:53–56
Jacquemoud S, Ustin S (2008) Modeling leaf optical properties. Photobiological Sciences Online.
Environmental Photobiology. http://www.photobiology.info/#Environ. Accessed 27 Nov 2018
Jacquemoud S, Bacour C, Poilvé H, Frangi J-P (2000) Comparison of four radiative transfer models to simulate plant canopies reflectance: direct and inverse models. Remote Sens Environ
74:471–481
Jacquemoud S, Verhoef W, Baret F, Bacour C, Zarco-Tejada PJ et al (2009) PROSPECT + SAIL
models: a review of use for vegetation characterization. Remote Sens Environ 113(S1):S56–S66
James SA, Bell DT (2000) Leaf orientation, light interception and stomatal conductance of
Eucalyptus globulus ssp. globulus leaves. Tree Physiol 20:815–823
Junker LV, Ensminger I (2016) Fast detection of leaf pigments and isoprenoids for ecophysiological studies, plant phenotyping and validating remote–sensing of vegetation. Physiol Planta
158:369–381
S. L. Ustin and S. Jacquemoud
