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Elife|October 20, 2020
Photosynthetic sea slugs induce protective changes to the light reactions of the chloroplasts they steal from algaeVesa Havurinne, Esa TyystjärviPlant & Cell Physiology|October 24, 2017
Action Spectrum of Photoinhibition in the Diatom Phaeodactylum tricornutumVesa Havurinne, Esa TyystjärviPhysiologia Plantarum|April 4, 2017
Photoinhibition in marine picocyanobacteriaArto Soitamo, Vesa Havurinne, Esa TyystjärviPhotosynthesis Research|June 26, 2026
Siphonous green macroalgae with contrasting capacities for the energy-dependent quenching, qE, rely on different photoprotective mechanismsHeta Mattila, Vesa Havurinne, Paulo Cartaxana, et al.Plants (Basel, Switzerland)|January 16, 2020
Oxygen and ROS in PhotosynthesisSergey Khorobrykh, Vesa Havurinne, Heta Mattila, et al.Journal of Photochemistry and Photobiology. B, Biology|October 27, 2015
Reactive oxygen species: Reactions and detection from photosynthetic tissuesHeta Mattila, Sergey Khorobrykh, Vesa Havurinne, et al.Physiologia Plantarum|September 7, 2018
Unresolved quenching mechanisms of chlorophyll fluorescence may invalidate MT saturating pulse analyses of photosynthetic electron transfer in microalgaeVesa Havurinne, Heta Mattila, Mikko Antinluoma, et al.Photosynthesis Research|November 26, 2021
Ultraviolet screening by slug tissue and tight packing of plastids protect photosynthetic sea slugs from photoinhibitionVesa Havurinne, Riina Aitokari, Heta Mattila, et al.Royal Society Open Science|August 31, 2023
Prey species and abundance affect growth and photosynthetic performance of the polyphagous sea slug Elysia crispataPaulo Cartaxana, Luca Morelli, Elena Cassin, et al.Biology|January 28, 2026
Laboratory Rearing of the Photosynthetic Sea Slug Elysia crispata (Gastropoda, Sacoglossa): Implications for the Study of Kleptoplasty and Species ConservationPaulo Cartaxana, Diana Lopes, Vesa Havurinne, et al.Pageof 2