Josefin Sundin
Josefin Sundin
Researcher, Swedish University of Agricultural Sciences
Verified email at - Homepage
Cited by
Cited by
Direct and indirect effects of chemical contaminants on the behaviour, ecology and evolution of wildlife
M Saaristo, T Brodin, S Balshine, MG Bertram, BW Brooks, SM Ehlman, ...
Proceedings of the Royal Society B: Biological Sciences 285 (1885), 20181297, 2018
Ocean acidification does not impair the behaviour of coral reef fishes
TD Clark, GD Raby, DG Roche, SA Binning, B Speers-Roesch, F Jutfelt, ...
Nature 577 (7790), 370-375, 2020
Turbidity hampers mate choice in a pipefish
J Sundin, A Berglund, G Rosenqvist
Ethology 116 (8), 713-721, 2010
Two‐current choice flumes for testing avoidance and preference in aquatic animals
F Jutfelt, J Sundin, GD Raby, AS Krċng, TD Clark
Methods in Ecology and Evolution 8 (3), 379-390, 2017
9–28 d of exposure to elevated pCO2 reduces avoidance of predator odour but had no effect on behavioural lateralization or swimming activity in a temperate wrasse (Ctenolabrus …
J Sundin, F Jutfelt
ICES Journal of Marine Science 73 (3), 620-632, 2016
Are model organisms representative for climate change research? Testing thermal tolerance in wild and laboratory zebrafish populations
R Morgan, J Sundin, MH Finnĝen, G Dresler, MM Vendrell, A Dey, ...
Conservation Physiology 7 (1), coz036, 2019
On the Observation of Wild Zebrafish (Danio rerio) in India
J Sundin, R Morgan, MH Finnĝen, A Dey, K Sarkar, F Jutfelt
Zebrafish 16 (6), 546-553, 2019
Brain cooling marginally increases acute upper thermal tolerance in Atlantic cod
F Jutfelt, DG Roche, TD Clark, T Norin, SA Binning, B Speers-Roesch, ...
Journal of Experimental Biology 222 (19), jeb208249, 2019
Long-term exposure to elevated carbon dioxide does not alter activity levels of a coral reef fish in response to predator chemical cues
J Sundin, M Amcoff, F Mateos-González, GD Raby, F Jutfelt, TD Clark
Behavioral Ecology and Sociobiology 71 (8), 108, 2017
Maximum thermal limits of coral reef damselfishes are size dependent and resilient to near-future ocean acidification
TD Clark, DG Roche, SA Binning, B Speers-Roesch, J Sundin
Journal of Experimental Biology 220 (19), 3519-3526, 2017
Behavioural lateralization in a detour test is not repeatable in fishes
DG Roche, M Amcoff, R Morgan, J Sundin, AH Andreassen, MH Finnĝen, ...
Animal Behaviour 167, 55-64, 2020
Altered Oceanic pH Impairs Mating Propensity in a Pipefish
J Sundin, G Rosenqvist, A Berglund
Ethology 119 (1), 86-93, 2013
Behavioural alterations induced by the anxiolytic pollutant oxazepam are reversible after depuration in a freshwater fish
J Sundin, F Jutfelt, M Thorlacius, J Fick, T Brodin
Science of The Total Environment 665, 390-399, 2019
Male mate choice relies on major histocompatibility complex class I in a sex‐role‐reversed pipefish
O Roth, J Sundin, A Berglund, G Rosenqvist, KM Wegner
Journal of evolutionary biology 27 (5), 929-938, 2014
The operational sex ratio and density influence spatial relationships between breeding pipefish
T Aronsen, KB Mobley, A Berglund, J Sundin, AM Billing, G Rosenqvist
Behavioral Ecology 24 (4), 888-897, 2013
Meta-analysis reveals an extreme “decline effect” in the impacts of ocean acidification on fish behavior
JC Clements, J Sundin, TD Clark, F Jutfelt
PLoS biology 20 (2), e3001511, 2022
Long-term acclimation to near-future ocean acidification has negligible effects on energetic attributes in a juvenile coral reef fish
J Sundin, M Amcoff, F Mateos-González, GD Raby, TD Clark
Oecologia 190 (3), 689-702, 2019
Effects of elevated carbon dioxide on male and female behavioural lateralization in a temperate goby
J Sundin, F Jutfelt
Royal Society open science 5 (3), 171550, 2018
Male broad‐nosed pipefish Syngnathus typhle do not locate females by smell
C Lindqvist, J Sundin, A Berglund, G Rosenqvist
Journal of Fish Biology 78 (6), 1861-1867, 2011
Straight‐nosed pipefish Nerophis ophidion and broad‐nosed pipefish Syngnathus typhle avoid eelgrass overgrown with filamentous algae
J Sundin, Ö Jacobsson, A Berglund, G Rosenqvist
Journal of Fish Biology 78 (6), 1855-1860, 2011
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