Detecting drought stress occurrence using synergies between Sun induced fluorescence and vegetation surface temperature spatial records

Author:

Nagy Zoltán,Balogh János,Petrás Dóra,Fóti Szilvia,MacArthur Alasdair,Pintér Krisztina

Funder

European Space Agency

Hungarian Academy of Sciences

Publisher

Elsevier BV

Subject

Pollution,Waste Management and Disposal,Environmental Chemistry,Environmental Engineering

Reference49 articles.

1. Meta-analysis assessing potential of steady-state chlorophyll fluorescence for remote sensing detection of plant water, temperature and nitrogen stress;Ač;Remote Sens. Environ.,2015

2. Diurnal dynamics of nonphotochemical quenching in Arabidopsis npq mutants assessed by solar-induced fluorescence and reflectance measurements in the field;Acebron;Wiley Online Library,2021

3. Alonso, L., van Wittenberghe, S., Amorós-López, J., Vila-Francés, J., Gómez-Chova, L., & Moreno, J. (2017). Diurnal cycle relationships between passive fluorescence, PRI and NPQ of vegetation in a controlled stress experiment. Remote Sensing, Vol. 9, page 770, (8). doi:https://doi.org/10.3390/RS9080770.

4. Badgley, G., Field, C. B., & Berry, J. A. (n.d.). Canopy near-infrared reflectance and terrestrial photosynthesis. Retrieved March 2, 2022, from http://advances.sciencemag.org/cgi/.

5. Separating the effects of temperature and carbon allocation on the diel pattern of soil respiration in the different phenological stages in dry grasslands;Balogh;PloS One,2019

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