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Photosynthesis Research|May 27, 2026
Q<sub>A</sub> and Q<sub>B</sub> reduction states induce protein dynamics underlying the dual phase fluorescence rise in Photosystem IIAgu LaiskPhotosynthesis Research|January 22, 2020
Variable fluorescence of closed photochemical reaction centersAgu Laisk, Vello OjaPhotosynthesis Research|September 12, 2020
Time- and reduction-dependent rise of photosystem II fluorescence during microseconds-long inductions in leavesVello Oja, Agu LaiskPhotosynthesis Research|August 15, 2012
Photosystem II antennae are not energetically connected: evidence based on flash-induced O2 evolution and chlorophyll fluorescence in sunflower leavesVello Oja, Agu LaiskPhotosynthesis Research|September 6, 2013
Thermal phase and excitonic connectivity in fluorescence inductionAgu Laisk, Vello OjaPhotosynthesis Research|September 23, 2017
Kinetics of photosystem II electron transport: a mathematical analysis based on chlorophyll fluorescence inductionAgu Laisk, Vello OjaPhotosynthesis Research|November 1, 2011
Oxygen evolution from single- and multiple-turnover light pulses: temporal kinetics of electron transport through PSII in sunflower leavesVello Oja, Hillar Eichelmann, Agu LaiskPhotosynthesis Research|October 18, 2011
The size of the lumenal proton pool in leaves during induction and steady-state photosynthesisVello Oja, Hillar Eichelmann, Agu LaiskPlant & Cell Physiology|December 16, 2006
Calibration of simultaneous measurements of photosynthetic carbon dioxide uptake and oxygen evolution in leavesVello Oja, Hillar Eichelmann, Agu LaiskPageof 4