74
Féret JB, Francois C, Asner GP, Gitelson AA, Martin RE, Bidel LPR, Ustin SL, le Maire G,
Jacquemoud S (2008) PROSPECT-4 and 5: Advances in the leaf optical properties model separating photosynthetic pigments. Remote Sens Environ 112(6):3030–3043
Féret JB, Gitelson AA, Noble SD, Jacquemoud S (2017) PROSPECT-D: towards modeling leaf
optical properties through a complete lifecycle. Remote Sens Environ 193:204–215
Féret JB, le Maire G, Jay S, Berveiller D, Bendoula R, Hmimina G, Cheraiet A, Oliveira JC,
Ponzoni FJ, Solanki T, de Boissieu F, Chave J, Nouvellon Y, Porcar-Castell A, Proisy C,
Soudani K, Gastellu-Etchegorry JP, Lefèvre-Fonollosa MJ (2018) Estimating leaf mass per
area and equivalent water thickness based on leaf optical properties: Potential and limitations
of physical modeling and machine learning. In: Remote Sens Environ
Field C, Mooney HA (1986) The photosynthesis-nitrogen relationship in wild plants. In: Givnish
T (ed) On the economy of plant form and function. Cambridge University Press, Cambridge,
pp 22–55
Foster JR, Townsend PA, Zganjar CE (2008) Spatial and temporal patterns of gap dominance by
low-canopy lianas detected using EO-1 Hyperion and Landsat Thematic Mapper. Remote Sens
Environ 112:2104–2117
Friedlingstein P, Meinshausen M, Arora VK, Jones CD, Anav A, Liddicoat SK, Knutti R
(2014) Uncertainties in CMIP5 climate projections due to carbon cycle feedbacks. J Clim
27:511–526
Funk JL, Larson JE, Ames GM, Butterfield BJ, Cavender-Bares J, Firn J, Laughlin DC, SuttonGrier AE, Williams L, Wright J (2017) Revisiting the Holy Grail: using plant functional traits
to understand ecological processes. Biol Rev 92:1156–1173
Gamon JA, Field CB, Goulden ML, Griffin KL, Hartley AE, Joel G, Penuelas J, Valentini R (1995)
Relationships between NDVI, canopy structure, and photosynthesis in 3 Californian vegetation
types. Ecol Appl 5:28–41
Gamon JA, Penuelas J, Field CB (1992) A narrow-waveband spectral index that tracks diurnal
changes in photosynthetic efficiency. Remote Sens Environ 41:35–44
Gamon JA, Serrano L, Surfus JS (1997) The photochemical reflectance index: an optical indicator
of photosynthetic radiation use efficiency across species, functional types, and nutrient levels.
Oecologia 112:492–501
Ganapol BD, Johnson LF, Hammer PD, Hlavka CA, Peterson DL (1998) LEAFMOD: a new
within-leaf radiative transfer model. Remote Sens Environ 63:182–193
Gao BC (1996) NDWI—A normalized difference water index for remote sensing of vegetation
liquid water from space. Remote Sens Environ 58(3):257–266
Gao BC, Goetz AFH (1995) Retrieval of equivalent water thickness and information related to
biochemical components of vegetation canopies from AVIRIS data. Remote Sens Environ
52(3):155–162
Gao BC, Heidebrecht KB, Goetz AFH (1993) Derivation of scaled surface reflectances from
AVIRIS data. Remote Sens Environ, 44:165–178
Gastellu-Etchegorry JP, Zagolski F, Mougtn E, Marty G, Giordano G (1995). An assessment of
canopy chemistry with AVIRIS—a case study in the Landes Forest, South-west France. Int J
Remote Sens 16(3):487–501
Gastellu-Etchegorry J-P, Yin T, Lauret N, Cajgfinger T, Gregoire T, Grau E, Feret J-B, Lopes M,
Guilleux J, Dedieu G, Malenovský Z, Cook BD, Morton D, Rubio J, Durrieu S, Cazanave G,
Martin E, Ristorcelli T (2015) Discrete anisotropic radiative transfer (DART 5) for modeling
airborne and satellite spectroradiometer and LIDAR acquisitions of natural and urban landscapes. Remote Sens 7:1667–1701
Gates DM, Keegan HJ, Schleter JC, Weidner VR (1965) Spectral properties of plants. Appl Opt
4(1):11–20
Geladi P, Kowalski BR (1986) Partial least-squares regression - A tutorial. Anal Chim Acta
185:1–17
Gil-Pérez B, Zarco-Tejada PJ, Correa-Guimaraes A, Relea-Gangas E, Navas-Gracia LM,
Hernández-Navarro S, Sanz-Requena JF, Berjón A, Martín-Gil J (2010). Vitis-Journal of
Grapevine Research 49(4):167–173
S. P. Serbin and P. A. Townsend
Féret JB, Francois C, Asner GP, Gitelson AA, Martin RE, Bidel LPR, Ustin SL, le Maire G,
Jacquemoud S (2008) PROSPECT-4 and 5: Advances in the leaf optical properties model separating photosynthetic pigments. Remote Sens Environ 112(6):3030–3043
Féret JB, Gitelson AA, Noble SD, Jacquemoud S (2017) PROSPECT-D: towards modeling leaf
optical properties through a complete lifecycle. Remote Sens Environ 193:204–215
Féret JB, le Maire G, Jay S, Berveiller D, Bendoula R, Hmimina G, Cheraiet A, Oliveira JC,
Ponzoni FJ, Solanki T, de Boissieu F, Chave J, Nouvellon Y, Porcar-Castell A, Proisy C,
Soudani K, Gastellu-Etchegorry JP, Lefèvre-Fonollosa MJ (2018) Estimating leaf mass per
area and equivalent water thickness based on leaf optical properties: Potential and limitations
of physical modeling and machine learning. In: Remote Sens Environ
Field C, Mooney HA (1986) The photosynthesis-nitrogen relationship in wild plants. In: Givnish
T (ed) On the economy of plant form and function. Cambridge University Press, Cambridge,
pp 22–55
Foster JR, Townsend PA, Zganjar CE (2008) Spatial and temporal patterns of gap dominance by
low-canopy lianas detected using EO-1 Hyperion and Landsat Thematic Mapper. Remote Sens
Environ 112:2104–2117
Friedlingstein P, Meinshausen M, Arora VK, Jones CD, Anav A, Liddicoat SK, Knutti R
(2014) Uncertainties in CMIP5 climate projections due to carbon cycle feedbacks. J Clim
27:511–526
Funk JL, Larson JE, Ames GM, Butterfield BJ, Cavender-Bares J, Firn J, Laughlin DC, SuttonGrier AE, Williams L, Wright J (2017) Revisiting the Holy Grail: using plant functional traits
to understand ecological processes. Biol Rev 92:1156–1173
Gamon JA, Field CB, Goulden ML, Griffin KL, Hartley AE, Joel G, Penuelas J, Valentini R (1995)
Relationships between NDVI, canopy structure, and photosynthesis in 3 Californian vegetation
types. Ecol Appl 5:28–41
Gamon JA, Penuelas J, Field CB (1992) A narrow-waveband spectral index that tracks diurnal
changes in photosynthetic efficiency. Remote Sens Environ 41:35–44
Gamon JA, Serrano L, Surfus JS (1997) The photochemical reflectance index: an optical indicator
of photosynthetic radiation use efficiency across species, functional types, and nutrient levels.
Oecologia 112:492–501
Ganapol BD, Johnson LF, Hammer PD, Hlavka CA, Peterson DL (1998) LEAFMOD: a new
within-leaf radiative transfer model. Remote Sens Environ 63:182–193
Gao BC (1996) NDWI—A normalized difference water index for remote sensing of vegetation
liquid water from space. Remote Sens Environ 58(3):257–266
Gao BC, Goetz AFH (1995) Retrieval of equivalent water thickness and information related to
biochemical components of vegetation canopies from AVIRIS data. Remote Sens Environ
52(3):155–162
Gao BC, Heidebrecht KB, Goetz AFH (1993) Derivation of scaled surface reflectances from
AVIRIS data. Remote Sens Environ, 44:165–178
Gastellu-Etchegorry JP, Zagolski F, Mougtn E, Marty G, Giordano G (1995). An assessment of
canopy chemistry with AVIRIS—a case study in the Landes Forest, South-west France. Int J
Remote Sens 16(3):487–501
Gastellu-Etchegorry J-P, Yin T, Lauret N, Cajgfinger T, Gregoire T, Grau E, Feret J-B, Lopes M,
Guilleux J, Dedieu G, Malenovský Z, Cook BD, Morton D, Rubio J, Durrieu S, Cazanave G,
Martin E, Ristorcelli T (2015) Discrete anisotropic radiative transfer (DART 5) for modeling
airborne and satellite spectroradiometer and LIDAR acquisitions of natural and urban landscapes. Remote Sens 7:1667–1701
Gates DM, Keegan HJ, Schleter JC, Weidner VR (1965) Spectral properties of plants. Appl Opt
4(1):11–20
Geladi P, Kowalski BR (1986) Partial least-squares regression - A tutorial. Anal Chim Acta
185:1–17
Gil-Pérez B, Zarco-Tejada PJ, Correa-Guimaraes A, Relea-Gangas E, Navas-Gracia LM,
Hernández-Navarro S, Sanz-Requena JF, Berjón A, Martín-Gil J (2010). Vitis-Journal of
Grapevine Research 49(4):167–173
S. P. Serbin and P. A. Townsend
