Register      Login
Functional Plant Biology Functional Plant Biology Society
Plant function and evolutionary biology

Articles citing this paper

Time-resolved blue-green fluorescence of sugar beet leaves. Temperature-induced changes and consequences for the potential use of blue-green fluorescence as a signature for remote sensing of plants

Fermín Morales, Zoran G. Cerovic and Ismael Moya
25(3) pp.325 - 334


14 articles found in Crossref database.

Multicolor Fluorescence Imaging of Leaves—A Useful Tool for Visualizing Systemic Viral Infections in Plants†
Pineda Mónica, Gáspár László, Morales Fermín, Szigeti Zoltán, Barón Matilde
Photochemistry and Photobiology. 2008 84(5). p.1048
Effects of Preprocessing of Ultraviolet-Induced Fluorescence Spectra in Plant Fingerprinting Applications
Panneton Bernard, Roger Jean-Michel, Guillaume Serge, Longchamps Louis
Applied Spectroscopy. 2008 62(7). p.747
Fluorometric Quantification of Ferulic Acid Concentrations Based on Deconvolution of Intrinsic Fluorescence Spectra
INOKUCHI Reina, TAKAICHI Hiroshi, KAWANO Tomonori
Environment Control in Biology. 2016 54(1). p.57
Improved Discrimination between Monocotyledonous and Dicotyledonous Plants for Weed Control Based on the Blue-Green Region of Ultraviolet-Induced Fluorescence Spectra
Panneton Bernard, Guillaume Serge, Roger Jean-Michel, Samson Guy
Applied Spectroscopy. 2010 64(1). p.30
Sensing crop nitrogen status with fluorescence indicators. A review
Tremblay Nicolas, Wang Zhijie, Cerovic Zoran G.
Agronomy for Sustainable Development. 2012 32(2). p.451
Responses of radish (Raphanus sativus) to drought stress
Stagnari F., Galieni A., D'Egidio S., Pagnani G., Pisante M.
Annals of Applied Biology. 2018 172(2). p.170
Imaging of the Blue, Green, and Red Fluorescence Emission of Plants: An Overview
Buschmann C., Langsdorf G., Lichtenthaler H.K.
Photosynthetica. 2000 38(4). p.483
Dual-excitation FLIDAR for the estimation of epidermal UV absorption in leaves and canopies
Ounis A, Cerovic Z.G, Briantais J.M, Moya I
Remote Sensing of Environment. 2001 76(1). p.33
Physiological response of sugar beet (Beta vulgaris) genotypes to a temporary water deficit, as evaluated with a multiparameter fluorescence sensor
Leufen Georg, Noga Georg, Hunsche Mauricio
Acta Physiologiae Plantarum. 2013 35(6). p.1763
Flavonoid Distribution in Tissues of Phillyrea latifolia L. Leaves as Estimated by Microspectrofluorometry and Multispectral Fluorescence Microimaging¶
Agati Giovanni, Galardi Carlotta, Gravano Elisabetta, Romani Annalisa, Tattini Massimiliano
Photochemistry and Photobiology. 2002 76(3). p.350
Evidence from Action and Fluorescence Spectra that UV-Induced Violet–Blue–Green Fluorescence Enhances Leaf Photosynthesis¶
Mantha Sailaja V., Johnson Gregory A., Day Thomas A.
Photochemistry and Photobiology. 2001 73(3). p.249
The application of time decay characteristics of laser‐induced fluorescence in the classification of vegetation
Gong Wei, Yang Jian, Shi Shuo, Du Lin, Sun Jia, Song Shalei
Luminescence. 2017 32(1). p.17
Possible approaches to remote sensing of photosynthetic activity
IGARSS 2003. 2003 IEEE International Geoscience and Remote Sensing Symposium. Proceedings (IEEE Cat. No.03CH37477) (2003)
Moya I., Cartelat A., Cerovic Z.G., Ducruet J.-M., Evain S., Flexas J., Goulas Y., Louis J., Meyer S., Moise N., Ounis A.
Fluorescence indices for monitoring the ripening of tomatoes in pre- and postharvest phases
Hoffmann Anna M., Noga Georg, Hunsche Mauricio
Scientia Horticulturae. 2015 191 p.74

Committee on Publication Ethics


Abstract Export Citation Get Permission