Nemani R, Pierce L, Running S, Band L (1993) Forest ecosystem processes at the watershed
scale: Sensitivity to remotely-sensed Leaf Area Index estimates. Int J Remote Sens
14(13):2519–2534. doi:10.1080/01431169308904290
Pisek J, Chen JM (2007) Comparison and validation of MODIS and VEGETATION global LAI
products over four BigFoot sites in North America. Remote Sens Environ 109(1):81–94.
doi:10.1016/j.rse.2006.12.004
Pitman AJ (2003) The evolution of, and revolution in, land surface schemes designed for climate
models. Int J Climatol 23(5):479–510. doi:10.1002/joc.893
Rautiainen, M (2005) Retrieval of leaf area index for a coniferous forest by inverting a forest
reflectance model. Remote Sens Environ 99:295–303
Ross JK, Marshak AL (1988) Calculation of canopy bidirectional reflectance using the MonteCarlo method. Remote Sens Environ 24(2):213–225
Running SW, Gower ST (1991) Forest-BGC, a general-model of forest ecosystem processes for
regional applications.2. Dynamic carbon allocation and nitrogen budgets. Tree Physiol
9(1–2):147–160
Sea WB, Choler P, Beringer J, Weinmann RA, Hutley LB, Leuning R (2011) Documenting
improvement in leaf area index estimates from MODIS using hemispherical photos for
Australian
savannas.
Agric
For
Meteorol
151(11):1453–1461.
doi:10.1016/
j.agrformet.2010.12.006
Sellers PJ, Mintz Y, Sud YC, Dalcher A (1986) A simple biosphere model (sib) for use within
general-circulation models. J Atmos Sci 43(6):505–531
Sellers PJ, Randall DA, Collatz GJ, Berry JA, Field CB, Dazlich DA, et al. (1996) A revised land
surface parameterization (SiB2) for atmospheric GCMs. Part1: Model formulation. J Clim
9(4):676–705
Shabanov NV, Huang D, Yang W, Tan B, Knyazikhin Y, Myneni RB, Ahl DE et al (2005)
Analysis and optimization of the MODIS leaf area index algorithm retrievals over broadleaf
forests. IEEE Trans Geosci Remote Sens 43(8):1855–1865. doi:10.1109/TGRS.2005.852477
Smolander S, Stenberg P (2005) Simple parameterizations of the radiation budget of uniform
broadleaved and coniferous canopies. Remote Sens Environ 94(3):355–363. doi:10.1016/
j.rse.2004.10.010
Steltzer H, Welker JM (2006) Modeling the effect of photosynthetic vegetation properties on the
NDVI–LAI relationship. Ecology 87(11):2765–2772
Stenberg Pauline, Rautiainen Miina, Manninen T (2004) Reduced simple ratio better than NDVI
for estimating LAI in Finnish pine and spruce stands. Silva Fennica 38:3–14
Tan B, Hu JN, Huang D, Yang WZ, Zhang P, Shabanov NV, Knyazikhin Y et al (2005)
Assessment of the broadleaf crops leaf area index product from the Terra MODIS instrument.
Agric For Meteorol 135(1–4):124–134. doi:10.1016/j.agrformet.2005.10.008
Tarnavsky E, Garrigues S, Brown M (2008) Multiscale geostatistical analysis of AVHRR, SPOTVGT, and MODIS global NDVI products. Remote Sens Environ 112(2):535–549.
doi:10.1016/j.rse.2007.05.008
Tian, Y. (2004) Comparison of seasonal and spatial variations of leaf area index and fraction of
absorbed photosynthetically active radiation from Moderate Resolution Imaging Spectroradiometer (MODIS) and Common Land Model. J Geophys Res 109(D1), D01103.
doi:10.1029/2003JD003777 American Geophysical Union
Van Leeuwen W, Orr B, Marsh S, Herrmann S (2006) Multi-sensor NDVI data continuity:
uncertainties and implications for vegetation monitoring applications. Remote Sens Environ
100(1):67–81. doi:10.1016/j.rse.2005.10.002
Verger A, Baret F, Weiss M, Lacaze R, Makhmara H, and Vermote E (2012) Long term
consistent global GEOV1 AVHRR biophysical products. 1st EARSeL workshop on temporal
analysis of satellite images, Mykonos (Greece) (pp 1–6)
Verger Aleixandre, Baret F, Weiss M (2011) A multisensor fusion approach to improve LAI time
series. Remote Sens Environ 115(10):2460–2470. doi:10.1016/j.rse.2011.05.006
Wang Y (2004) Evaluation of the MODIS LAI algorithm at a coniferous forest site in Finland.
Remote Sens Environ 91(1):114–127. doi:10.1016/j.rse.2004.02.007
60
S. Ganguly et al.
scale: Sensitivity to remotely-sensed Leaf Area Index estimates. Int J Remote Sens
14(13):2519–2534. doi:10.1080/01431169308904290
Pisek J, Chen JM (2007) Comparison and validation of MODIS and VEGETATION global LAI
products over four BigFoot sites in North America. Remote Sens Environ 109(1):81–94.
doi:10.1016/j.rse.2006.12.004
Pitman AJ (2003) The evolution of, and revolution in, land surface schemes designed for climate
models. Int J Climatol 23(5):479–510. doi:10.1002/joc.893
Rautiainen, M (2005) Retrieval of leaf area index for a coniferous forest by inverting a forest
reflectance model. Remote Sens Environ 99:295–303
Ross JK, Marshak AL (1988) Calculation of canopy bidirectional reflectance using the MonteCarlo method. Remote Sens Environ 24(2):213–225
Running SW, Gower ST (1991) Forest-BGC, a general-model of forest ecosystem processes for
regional applications.2. Dynamic carbon allocation and nitrogen budgets. Tree Physiol
9(1–2):147–160
Sea WB, Choler P, Beringer J, Weinmann RA, Hutley LB, Leuning R (2011) Documenting
improvement in leaf area index estimates from MODIS using hemispherical photos for
Australian
savannas.
Agric
For
Meteorol
151(11):1453–1461.
doi:10.1016/
j.agrformet.2010.12.006
Sellers PJ, Mintz Y, Sud YC, Dalcher A (1986) A simple biosphere model (sib) for use within
general-circulation models. J Atmos Sci 43(6):505–531
Sellers PJ, Randall DA, Collatz GJ, Berry JA, Field CB, Dazlich DA, et al. (1996) A revised land
surface parameterization (SiB2) for atmospheric GCMs. Part1: Model formulation. J Clim
9(4):676–705
Shabanov NV, Huang D, Yang W, Tan B, Knyazikhin Y, Myneni RB, Ahl DE et al (2005)
Analysis and optimization of the MODIS leaf area index algorithm retrievals over broadleaf
forests. IEEE Trans Geosci Remote Sens 43(8):1855–1865. doi:10.1109/TGRS.2005.852477
Smolander S, Stenberg P (2005) Simple parameterizations of the radiation budget of uniform
broadleaved and coniferous canopies. Remote Sens Environ 94(3):355–363. doi:10.1016/
j.rse.2004.10.010
Steltzer H, Welker JM (2006) Modeling the effect of photosynthetic vegetation properties on the
NDVI–LAI relationship. Ecology 87(11):2765–2772
Stenberg Pauline, Rautiainen Miina, Manninen T (2004) Reduced simple ratio better than NDVI
for estimating LAI in Finnish pine and spruce stands. Silva Fennica 38:3–14
Tan B, Hu JN, Huang D, Yang WZ, Zhang P, Shabanov NV, Knyazikhin Y et al (2005)
Assessment of the broadleaf crops leaf area index product from the Terra MODIS instrument.
Agric For Meteorol 135(1–4):124–134. doi:10.1016/j.agrformet.2005.10.008
Tarnavsky E, Garrigues S, Brown M (2008) Multiscale geostatistical analysis of AVHRR, SPOTVGT, and MODIS global NDVI products. Remote Sens Environ 112(2):535–549.
doi:10.1016/j.rse.2007.05.008
Tian, Y. (2004) Comparison of seasonal and spatial variations of leaf area index and fraction of
absorbed photosynthetically active radiation from Moderate Resolution Imaging Spectroradiometer (MODIS) and Common Land Model. J Geophys Res 109(D1), D01103.
doi:10.1029/2003JD003777 American Geophysical Union
Van Leeuwen W, Orr B, Marsh S, Herrmann S (2006) Multi-sensor NDVI data continuity:
uncertainties and implications for vegetation monitoring applications. Remote Sens Environ
100(1):67–81. doi:10.1016/j.rse.2005.10.002
Verger A, Baret F, Weiss M, Lacaze R, Makhmara H, and Vermote E (2012) Long term
consistent global GEOV1 AVHRR biophysical products. 1st EARSeL workshop on temporal
analysis of satellite images, Mykonos (Greece) (pp 1–6)
Verger Aleixandre, Baret F, Weiss M (2011) A multisensor fusion approach to improve LAI time
series. Remote Sens Environ 115(10):2460–2470. doi:10.1016/j.rse.2011.05.006
Wang Y (2004) Evaluation of the MODIS LAI algorithm at a coniferous forest site in Finland.
Remote Sens Environ 91(1):114–127. doi:10.1016/j.rse.2004.02.007
60
S. Ganguly et al.
