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Original Articles

Comparison of measurements and FluorMOD simulations for solar‐induced chlorophyll fluorescence and reflectance of a corn crop under nitrogen treatments

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Pages 5193-5213 | Received 13 Dec 2006, Accepted 04 Dec 2007, Published online: 03 Dec 2010

References

  • ALONSO , L. , GOMEZ , L. , AMOROS , J. , VILA , J. , GUANTER , L. , CALPE , J. and MORENO , J. 2007 . “ Sensitivity analysis of the FLD method for the measurement of chlorophyll fluorescense using a field spectroradiometer. ” . In 3rd International Workshop on Remote Sensing of Vegetation Fluorescence 7–9 February 2007, Florence, Italy, CD‐ROM
  • Campbell , P. K. E. , Middleton , E. M. , Corp , L. A. and Kim , M. S. 2008 . “ Contribution of chlorophyll fluorescence to the apparent reflectance of vegetation. ” . In Science of the Total Environment (Special Issue of the 2006 Biogeomon Conference) DOI 10.1016/j.scitotenv.2007.11.004, in press
  • Campbell , P. K. E. , Middleton , E. M. , Corp , L. A. , McMurtrey , J. E., III. , Kim , M. S. , Chappelle , E. W. and Butcher , L. M. 2002 . “ Chlorophyll fluorescence and apparent red/near‐infrared reflectance of corn foliage subjected to nitrogen deficiency. ” . In Proceedings, International Geoscience and Remote Sensing Symposium (IGARSS'02) 23–27 June, Toronto, Canada, CD‐ROM
  • Corp , L. A. , McMurtrey , J. E. , Middleton , E. M. , Mulchi , C. L. , Chappelle , E. W. and Daughtry , C. S. T. 2003 . Fluorescence sensing systems: in vivo detection of biophysical variations in field corn due to nitrogen supply. . Remote Sensing of Environment , 86 : 470 – 479 .
  • Corp , L. A. , Middleton , E. M. , Daughtry , C. S. T. and Campbell , P. K. E. 2006a . “ Solar induced fluorescence and reflectance sensing techniques for monitoring nitrogen utilization in corn. ” . In Proceedings, International Geoscience and Remote Sensing Symposium (IGARSS 2006) 1–5 August 2006, Denver, CO, CD‐ROM
  • Corp , L. A. , Middleton , E. M. , Daughtry , C. S. T. , Campbell , P. K. E. , HUEMMRICH , K. F. and CHENG , Y. B. 2008 . Impact of spectral resolution on solar induced fluorescence and reflectance indices for monitoring vegetation. . Proceedings, International Geoscience and Remote Sensing Symposium , 6–11 July, Boston, MA, CD‐ROM
  • Corp , L. A. , Middleton , E. M. , McMurtrey , J. E. , Campbell , P. K. E. and Butcher , L. M. 2006b . Fluorescence sensing techniques for vegetation assessment. . Applied Optics , 45 : 1023 – 1033 .
  • Dobrowski , S. Z. , Pushnik , J. C. , Zarco‐Tejada , P. J. and Ustin , S. L. 2005 . Simple reflectance indices track heat and water stress‐induced changes in steady‐state chlorophyll fluorescence at the canopy level. . Remote Sensing of Environment , 97 : 403 – 414 .
  • Guanter , L. , Alonso , L. , Gomez‐Chova , L. , Amoros‐Lopez , J. , Vila , J. and Moreno , J. 2007 . Estimation of solar‐induced vegetation fluorescence from space measurements. . Geophysical Research Letters , 34 : L08401
  • Liu , L. , Zhang , Y. , Wang , J. and Zhao , C. 2005 . Detecting solar‐induced chlorophyll fluorescence from field radiance spectra based on Fraunhofer line principle. . IEEE Transactions of Geoscience and Remote Sensing , 43 : 827 – 832 .
  • Louis , J. , Ounis , A. , Ducruet , J.‐M. , Evain , S. , Laurila , T. , Thum , T. , Aurela , M. , Wingsle , G. , Alonso , L. , Pedros , R. and Moya , I. 2005 . Remote sensing of sunlight‐induced chlorophyll fluorescence and reflectance of Scots pine in the boreal forest during spring recovery. . Remote Sensing of Environment , 96 : 37 – 48 .
  • Meroni , M. and Colombo , R. 2006 . Leaf level detection of solar induced chlorophyll fluorescence by means of a subnanometer resolution spectroradiometer. . Remote Sensing of Environment , 103 : 438 – 448 .
  • Middleton , E. M. , Corp , L. A. , Daughtry , C. S. T. and Campbell , P. K. E. 2006 . “ Chlorophyll fluorescence emissions of vegetation canopies from high resolution field reflectance spectra. ” . In Proceedings, International Geoscience and Remote Sensing Symposium (IGARSS 2006) 1–5 August 2006, Denver, CO, CD‐ROM
  • Middleton , E. M. , Corp , L. A. , Daughtry , C. S. T. , Campbell , P. K. E. and Butcher , M. L. Deriving chlorophyll fluorescence emissions of vegetation canopies from high resolution field reflectance spectra. SPIE, Optical Sensors and Sensing Systems for Natural Resources and Food Quality ,
  • Moreno , J. 2005 . FLEX‐Fluorescence Explorer: a mission concept proposal in response to the European Space Agency's Earth Explorer Core Missions 2005 concept call, submitted August 2005 [one of six concepts selected in 2006 for pre‐Phase A studies. Available online at http://en.wikipedia.org/wiki/FLEX_mission]
  • Moya , I. , Camenen , L. , Evain , S. , Goulas , Y. , Cerovic , Z. G. , Latouche , G. , Flexas , J. and Ounis , A. 2004 . A new instrument for passive remote sensing. 1. Measurements of sunlight‐induced chlorophyll fluorescence. . Remote Sensing of Environment , 91 : 186 – 197 .
  • Moya , I. , Cartelat , A. , Cerovic , Z. G. , Ducruet , J.‐M. , Evain , S. , Flexas , J. , Goulas , Y. , Louis , J. , Meyer , S. , Moise , N. and Ounis , A. 2003 . “ Possible approaches to remote sensing of photosynthetic activity. ” . In Proceedings, International Geoscience and Remote Sensing Symposium (IGARSS'03) 21–25 July, Toulouse, France, CD‐ROM
  • Pedrós , R. , Jacquemoud , S. , Goulas , Y. , Louis , J. and Moya , I. 2005 . “ A new leaf fluorescence model. ” . In 2nd International Workshop on Remote Sensing of Vegetation Fluorescence 17–19 November 2004, Montreal, Canada, CD‐ROM
  • Plascyk , J. 1975 . The MKII Fraunhofer line discriminator (FLD‐II) for airborne and orbital remote sensing of solar‐stimulated luminescence. . Optical Engineering , 14 : 339 – 346 .
  • Rosema , A. , Snel , J. F. H. , Zahn , H. , Buurmeijer , W. F. and Van Hove , L. W. A. 1998 . The relation between laser‐induced chlorophyll fluorescence and photosynthesis. . Remote Sensing of Environment , 65 : 143 – 154 .
  • Theisen , A. F. 2000 . “ A passive method for detecting vegetation stress from orbit: chlorophyll fluorescence from Fraunhofer lines. ” . In Proceedings, RS2000, Soil Science Society of America (SSSA) 22–25 October, Corpus Christi, TX, USA, CD‐ROM
  • Verhoef , W. 1984 . Light scattering by leaf layers with application to canopy reflectance modelling: the SAIL model. . Remote Sensing of Environment , 16 : 125 – 141 .
  • Verhoef , W. 1998 . “ Theory of radiative transfer models applied in optical remote sensing of vegetation canopies. ” . PhD thesis, Wageningen Agricultural University
  • Verhoef , W. 2005 . “ FluorMOD: extension of SAIL to model solar‐induced canopy fluorescence spectra. ” . In 2nd International Workshop on Remote Sensing of Vegetation Fluorescence 17–19 November 2004, Montreal, Canada, CD‐ROM
  • Wellburn , A. 1994 . The spectral determination of chlorophylls a and b, as well as total carotenoids using various solvents with spectrophotometers of different resolution. . Journal of Plant Physiology , 144 : 307 – 313 .
  • Zarco‐Tejada , P. J. , Miller , J. R. , Mohammed , G. H. and Noland , T. L. 2000 . Chlorophyll fluorescence effects on vegetation apparent reflectance: I. Leaf‐level measurements and model simulation. . Remote Sensing of Environment , 74 : 582 – 595 .
  • Zarco‐Tejada , P. J. , Miller , J. R. , Pedrós , R. , Verhoef , W. and Berger , M. 2004a . “ FluorMODgui: a graphic user interface for the spectral simulation of leaf and canopy fluorescence effects. ” . In 2nd International Workshop on Remote Sensing of Vegetation Fluorescence 17–19 November, Montreal, Canada, CD‐ROM
  • Zarco‐Tejada , P. J. , Pérez‐Priego , O. , Sepulcre‐Cantó , G. , Miller , J. R. and Fereres , E. 2004b . “ Chlorophyll fluorescence detection with a high‐spectral resolution spectrometer through in‐filling of the O2‐A band as a function of water stress in olive trees. ” . In 2nd International Workshop on Remote Sensing of Vegetation Fluorescence 17–19 November, Montreal, Canada, CD‐ROM

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