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Biochimica Et Biophysica Acta|March 10, 2012
The slow S to M fluorescence rise in cyanobacteria is due to a state 2 to state 1 transitionRadek Kaňa, Eva Kotabová, Ondřej Komárek, et al.Photochemistry and Photobiology|July 1, 1994
Azidotetrafluorophenyl retinal analogue: synthesis and bacteriorhodopsin pigment formationC J Beischel, D R Knapp, R Govindjee, et al.Photochemistry and Photobiology|July 1, 1994
pH dependence of the absorption spectra and photochemical transformations of the archaerhodopsinsE P Lukashev, R Govindjee, M Kono, et al.Journal of Microscopy|April 21, 2007
Fluorescence lifetime imaging microscopy of Chlamydomonas reinhardtii: non-photochemical quenching mutants and the effect of photosynthetic inhibitors on the slow chlorophyll fluorescence transientO Holub, M J Seufferheld, C Gohlke, et al.Photosynthesis Research|November 21, 2018
Changes in the photosynthesis properties and photoprotection capacity in rice (Oryza sativa) grown under red, blue, or white lightSaber Hamdani, Naveed Khan, Shahnaz Perveen, et al.Applied Microbiology and Biotechnology|May 4, 2019
Bacterial nitrilases and their regulationVarsha P Chhiba-Govindjee, Chris W van der Westhuyzen, Moira L Bode, et al.Photosynthesis Research|July 19, 2019
CO2 uptake and chlorophyll a fluorescence of Suaeda fruticosa grown under diurnal rhythm and after transfer to continuous darkSilas Wungrampha, Rohit Joshi, Ray S Rathore, et al.Photosynthetica|December 9, 2024
An open Internet of Things (IoT)-based framework for feedback control of photosynthetic activitiesS Yuan, H Tang, L J Fu, et al.Photosynthesis Research|October 16, 2012
Experimental in vivo measurements of light emission in plants: a perspective dedicated to David WalkerHazem M Kalaji, Vasilij Goltsev, Karolina Bosa, et al.Biochemistry|April 22, 1997
Proton uptake and release are rate-limiting steps in the photocycle of the bacteriorhodopsin mutant E204QS Misra, R Govindjee, T G Ebrey, et al.Pageof 29