382
Mooney HA, Field C, Gulmon SL, Bazzaz FA (1981) Photosynthetic capacity in relation to leaf
position in desert versus old-field annuals. Oecologia 50:109–112
Ollinger S, Smith ML (2005) Net primary production and canopy nitrogen in a temperate forest landscape: an analysis using imaging spectroscopy, modeling and field data. Ecosystems
8:760–778
Ollinger SV, Richardson AD, Martin ME, Hollinger DY, Frolking SE et al (2008) Canopy nitrogen,
C assimilation, and albedo in temperature and boreal forests: functional relations and potential
climate feedbacks. Proc Natl Acad Sci U S A 105:19336–19341
Ordoñez JC, Van Bodegom PM, Witte J-P, Wright IJ, Reich PB et al (2009) A global study of
relationships between leaf traits, climate and soil measures of nutrient fertility. Global Ecol
Biodiver 18:137–149
Owen NL, Thomas DW (1989) Infrared studies of “hard” and “soft” woods. Appl Spectrosc
43:451–455
Palmer KF, Williams D (1974) Optical properties in the near infrared. J Optical Soc Am
64:1107–1110
Pandy KK et al (1999) A study of chemical structure of soft and hardwood and wood polymers by
FTIR spectroscopy. J Appl Polym Sci 71:1969–1975
Parkhurst DF (1986) Internal leaf structure: a three-dimensional perspective. In: Givnish TJ (ed) On
the economy of plant form and function. Cambridge University Press, Cambridge, pp 215–249
Peters RD, Noble SD (2014) Spectrographic measurement of plant pigments from 300 to 800 nm.
Remote Sens Environ 148:119–123
Pierson Y, Bobbink F, Yan N (2013) Alcohol mediated liquefaction of lignocellulosic materials: a
mini review. Chem Eng Process Tech 1(2):1014
Poorter H, Niinemets Ü, Poorter L, Wright IJ, Villar R (2009) Causes and consequence of variation
in leaf mass per area (LMA): a meta-analysis. New Phytol 182:565–588
Poulson ME, Vogelmann TC (1990) Epidermal focusing and effects upon photosynthetic lightharvesting in leaves of Oxalis. Plant Cell Environ 13:803–811
Raven JA (2013) Rubisco: still the most abundant protein on earth? New Phytol 198:1–3
Roberts DA, Ustin SL, Ogunjemiyo S, Greenberg J, Dobrowski SZ, Chen J, Hinckley TM (2004)
Spectral and structural measures of northwest forest vegetation at leaf to canopy scales.
Ecosystems 7:545–562
Schaepman-Strub G, Schaepman ME, Painter TH, Dangel S, Martonchik JV (2006) Reflectance
quantities in optical remote sensing-definitions and case studies. Remote Sens Environ
103:28–42
Segelstein D (1981) The complex refractive index of water. M.S. thesis, University of MissouriKansas City. Figure derived from Philip Laven www.philiplaven.com/refractive index of water.
Accessed 7 Dec 2016
Serbin SP, Singh A, Desai AR, Dubois SG, Jablonski AD et al (2015) Remotely estimating photosynthetic capacity, and its response to temperature, in vegetation canopies using imaging
spectroscopy. Remote Sens Environ 167:78–87
Serrano L, Peñeulas J, Ustin SL (2002) Remote sensing of nitrogen and lignin in Mediterranean
vegetation from AVIRIS data: decomposing biochemical from structural signals. Remote Sens
Environ 81:355–364
Singh A, Serbin SP, McNeil BE, Kingdon CC, Townsend PA (2015) Imaging spectroscopy algorithms for mapping canopy foliar chemical and morphological traits and their uncertainties.
Ecol Appl 25:2180–2197
Smith WK, Vogelmann TC, DeLucia EH, Bell DT, Shepherd KA (1997) Leaf form and photosynthesis. BioSci 47:785–793
Smith M-L, Ollinger SV, Martin ME, Aber JD, Hallett RA et al (2002) Direct estimation of aboveground forest productivity through hyperspectral remote sensing of canopy nitrogen. Ecol Appl
12:1286–1302
Stapleton AE (1992) Ultraviolet radiation and plants: burning questions. Plant Cell 4:1353–1358
S. L. Ustin and S. Jacquemoud
Mooney HA, Field C, Gulmon SL, Bazzaz FA (1981) Photosynthetic capacity in relation to leaf
position in desert versus old-field annuals. Oecologia 50:109–112
Ollinger S, Smith ML (2005) Net primary production and canopy nitrogen in a temperate forest landscape: an analysis using imaging spectroscopy, modeling and field data. Ecosystems
8:760–778
Ollinger SV, Richardson AD, Martin ME, Hollinger DY, Frolking SE et al (2008) Canopy nitrogen,
C assimilation, and albedo in temperature and boreal forests: functional relations and potential
climate feedbacks. Proc Natl Acad Sci U S A 105:19336–19341
Ordoñez JC, Van Bodegom PM, Witte J-P, Wright IJ, Reich PB et al (2009) A global study of
relationships between leaf traits, climate and soil measures of nutrient fertility. Global Ecol
Biodiver 18:137–149
Owen NL, Thomas DW (1989) Infrared studies of “hard” and “soft” woods. Appl Spectrosc
43:451–455
Palmer KF, Williams D (1974) Optical properties in the near infrared. J Optical Soc Am
64:1107–1110
Pandy KK et al (1999) A study of chemical structure of soft and hardwood and wood polymers by
FTIR spectroscopy. J Appl Polym Sci 71:1969–1975
Parkhurst DF (1986) Internal leaf structure: a three-dimensional perspective. In: Givnish TJ (ed) On
the economy of plant form and function. Cambridge University Press, Cambridge, pp 215–249
Peters RD, Noble SD (2014) Spectrographic measurement of plant pigments from 300 to 800 nm.
Remote Sens Environ 148:119–123
Pierson Y, Bobbink F, Yan N (2013) Alcohol mediated liquefaction of lignocellulosic materials: a
mini review. Chem Eng Process Tech 1(2):1014
Poorter H, Niinemets Ü, Poorter L, Wright IJ, Villar R (2009) Causes and consequence of variation
in leaf mass per area (LMA): a meta-analysis. New Phytol 182:565–588
Poulson ME, Vogelmann TC (1990) Epidermal focusing and effects upon photosynthetic lightharvesting in leaves of Oxalis. Plant Cell Environ 13:803–811
Raven JA (2013) Rubisco: still the most abundant protein on earth? New Phytol 198:1–3
Roberts DA, Ustin SL, Ogunjemiyo S, Greenberg J, Dobrowski SZ, Chen J, Hinckley TM (2004)
Spectral and structural measures of northwest forest vegetation at leaf to canopy scales.
Ecosystems 7:545–562
Schaepman-Strub G, Schaepman ME, Painter TH, Dangel S, Martonchik JV (2006) Reflectance
quantities in optical remote sensing-definitions and case studies. Remote Sens Environ
103:28–42
Segelstein D (1981) The complex refractive index of water. M.S. thesis, University of MissouriKansas City. Figure derived from Philip Laven www.philiplaven.com/refractive index of water.
Accessed 7 Dec 2016
Serbin SP, Singh A, Desai AR, Dubois SG, Jablonski AD et al (2015) Remotely estimating photosynthetic capacity, and its response to temperature, in vegetation canopies using imaging
spectroscopy. Remote Sens Environ 167:78–87
Serrano L, Peñeulas J, Ustin SL (2002) Remote sensing of nitrogen and lignin in Mediterranean
vegetation from AVIRIS data: decomposing biochemical from structural signals. Remote Sens
Environ 81:355–364
Singh A, Serbin SP, McNeil BE, Kingdon CC, Townsend PA (2015) Imaging spectroscopy algorithms for mapping canopy foliar chemical and morphological traits and their uncertainties.
Ecol Appl 25:2180–2197
Smith WK, Vogelmann TC, DeLucia EH, Bell DT, Shepherd KA (1997) Leaf form and photosynthesis. BioSci 47:785–793
Smith M-L, Ollinger SV, Martin ME, Aber JD, Hallett RA et al (2002) Direct estimation of aboveground forest productivity through hyperspectral remote sensing of canopy nitrogen. Ecol Appl
12:1286–1302
Stapleton AE (1992) Ultraviolet radiation and plants: burning questions. Plant Cell 4:1353–1358
S. L. Ustin and S. Jacquemoud
