Ismaël Moya - 10 publications at/with LMD since 1968

- 2020 -

Dechant, B.; Ryu, Y.; Badgley, G.; Zeng, Y.; Berry, J. A.; Zhang, Y.; Goulas, Y.; Li, Z.; Zhang, Q.; Kang, M.; Li, J. and Moya, I., Canopy structure explains the relationship between photosynthesis and sun-induced chlorophyll fluorescence in crops Remote Sensing of Environment, 241, 111733 (2020) 10.1016/j.rse.2020.111733

- 2016 -

Ounis, A.; Bach, J.; Mahjoub, A.; Daumard, F.; Moya, I. and Goulas, Y., Combined use of LIDAR and hyperspectral measurements for remote sensing of fluorescence and vertical profile of canopies Revista de Teledeteccion, 2016, 87-94 (2016) 10.4995/raet.2015.3982

- 2015 -

Daumard, F.; Goulas, Y.; Ounis, A.; Pedrós, R. and Moya, I., Measurement and correction of atmospheric effects at different altitudes for remote sensing of sun-induced fluorescence in oxygen absorption bands IEEE Transactions on Geoscience and Remote Sensing, 53, 5180-5196 (2015) 10.1109/TGRS.2015.2418992

- 2012 -

Fournier, A.; Daumard, F.; Champagne, S.; Ounis, A.; Goulas, Y. and Moya, I., Effect of canopy structure on sun-induced chlorophyll fluorescence ISPRS Journal of Photogrammetry and Remote Sensing, 68, 112-120 (2012) 10.1016/j.isprsjprs.2012.01.003

Daumard, F.; Goulas, Y.; Champagne, S.; Fournier, A.; Ounis, A.; Olioso, A. and Moya, I., Continuous monitoring of canopy level sun-induced chlorophyll fluorescence during the growth of a sorghum field IEEE Transactions on Geoscience and Remote Sensing, 50, 4292-4300 (2012) 10.1109/TGRS.2012.2193131

- 2011 -

Sobrino, J. A.; Franch, B.; Jimenez-Muñoz, J. C.; Hidalgo, V.; Soria, G.; Julien, Y.; Oltra-Carrio, R.; Mattar, C.; Ruescas, A.; Daumard, F.; Champagne, S.; Fournier, A.; Goulas, Y.; Ounis, A. and Moya, I., Fluorescence estimation in the framework of the CEFLES2 campaign International Journal of Remote Sensing, 32, 5875-5889 (2011) 10.1080/01431161.2010.507792

- 2010 -

Pedrós, R.; Goulas, Y.; Jacquemoud, S.; Louis, J. and Moya, I., FluorMODleaf: A new leaf fluorescence emission model based on the PROSPECT model Remote Sensing of Environment, 114, 155-167 (2010) 10.1016/j.rse.2009.08.019

- 2009 -

Rascher, U.; Agati, G.; Alonso, L.; Cecchi, G.; Champagne, S.; Colombo, R.; Damm, A.; Daumard, F.; De Miguel, E.; Fernandez, G.; Franch, B.; Franke, J.; Gerbig, C.; Gioli, B.; Gómez, J. A.; Goulas, Y.; Guanter, L.; Gutiérrez-De-La-Cámara, É.; Hamdi, K.; Hostert, P. and 21 more, CEFLES2: The remote sensing component to quantify photosynthetic efficiency from the leaf to the region by measuring sun-induced fluorescence in the oxygen absorption bands Biogeosciences, 6, 1181-1198 (2009) 10.5194/bg-6-1181-2009

- 2007 -

Combes, D.; Bousquet, L.; Jacquemoud, S.; Sinoquet, H.; Varlet-Grancher, C. and Moya, I., A new spectrogoniophotometer to measure leaf spectral and directional optical properties Remote Sensing of Environment, 109, 107-117 (2007) 10.1016/j.rse.2006.12.007

- 2006 -

Meyer, S.; Cerovic, Z. G.; Goulas, Y.; Montpied, P.; Demotes-Mainard, S.; Bidel, L. P.; Moya, I. and Dreyer, E., Relationships between optically assessed polyphenols and chlorophyll contents, and leaf mass per area ratio in woody plants: A signature of the carbon-nitrogen balance within leaves? Plant, Cell and Environment, 29, 1338-1348 (2006) 10.1111/j.1365-3040.2006.01514.x


Retreived from SCOPUS using Rose, Michael E. and John R. Kitchin: “pybliometrics: Scriptable bibliometrics using a Python interface to Scopus”, SoftwareX 10 (2019) 100263.