Register      Login
Marine and Freshwater Research Marine and Freshwater Research Society
Advances in the aquatic sciences

Articles citing this paper

Effects of high pCO2 on early life development of pelagic spawning marine fish

Ana M. Faria A E , Soraia Filipe B , Ana F. Lopes A , Ana P. Oliveira C , Emanuel J. Gonçalves A and Laura Ribeiro D
+ Author Affiliations
- Author Affiliations

A Marine and Environmental Sciences Centre (MARE), ISPA – Instituto Universitário, Rua Jardim do Tabaco, 34, PT-1149-041 Lisboa, Portugal.

B Superior School of Tourism and Sea Technology, Santuário de Nossa Senhora dos Remédios, PT-2520-641 Peniche, Portugal.

C Instituto Português do Mar e da Atmosfera (IPMA, IP), Division of Oceanography and Environmental Bioprospecting, Avenida Brasília, 6, PT-1200 Lisboa, Portugal.

D Instituto Português do Mar e da Atmosfera (IPMA, IP), Aquaculture Research Station, Avenida 5 de Outubro, PT-8700-305 Olhão, Portugal.

E Corresponding author. Email address: afaria@ispa.pt

Marine and Freshwater Research 68(11) 2106-2114 https://doi.org/10.1071/MF16385
Submitted: 17 August 2016  Accepted: 21 March 2017   Published: 2 June 2017



13 articles found in Crossref database.

Ocean acidification but not elevated spring warming threatens a European seas predator
Alter Katharina, Peck Myron A.
Science of The Total Environment. 2021 782 p.146926
Ocean acidification effects on fish hearing
Radford C. A., Collins S. P., Munday P. L., Parsons D.
Proceedings of the Royal Society B: Biological Sciences. 2021 288(1946). p.20202754
Multistressor global change drivers reduce hatch and viability of Lingcod embryos, a benthic egg layer in the California Current System
Willis-Norton Ellen, Carr Mark H., Hazen Elliott L., Kroeker Kristy J.
Scientific Reports. 2022 12(1).
The effect of ocean acidification on otolith morphology in larvae of a tropical, epipelagic fish species, yellowfin tuna (Thunnus albacares)
Wexler Jeanne B., Margulies Daniel, Scholey Vernon, Lennert-Cody Cleridy E., Bromhead Don, Nicol Simon, Hoyle Simon D., Stein Maria, Williamson Jane E., Havenhand Jon
Journal of Experimental Marine Biology and Ecology. 2023 569 p.151949
Observation and analysis of morphology abnormalities in development of Oryzias melastigma embryos
Song Jingjing, Wu Haiyi, Liu Kaikai, Chi Wendan, Ge Shanshan, Zhang Zhipeng, Wang Mingqi, Yu Yi, Yu Daode
Journal of Oceanology and Limnology. 2021 39(4). p.1485
Effects of Experimental Ocean Acidification on the Larval Morphology and Metabolism of a Temperate Sparid, Chrysoblephus laticeps
Muller Cuen, Childs Amber-Robyn, James Nicola C., Potts Warren M.
Oceans. 2020 2(1). p.26
Carbon Dioxide (2019)
Grosell Martin
Ocean acidification alters morphology of all otolith types in Clark’s anemonefish (Amphiprion clarkii)
Holmberg Robert J., Wilcox-Freeburg Eric, Rhyne Andrew L., Tlusty Michael F., Stebbins Alan, Nye Jr. Steven W., Honig Aaron, Johnston Amy E., San Antonio Christine M., Bourque Bradford, Hannigan Robyn E.
PeerJ. 2019 7 p.e6152
Elucidating the Acid-Base Mechanisms Underlying Otolith Overgrowth in Fish Exposed to Ocean Acidification
Kwan Garfield T., Tresguerres Martin
SSRN Electronic Journal . 2021
Elucidating the acid-base mechanisms underlying otolith overgrowth in fish exposed to ocean acidification
Kwan Garfield T., Tresguerres Martin
Science of The Total Environment. 2022 823 p.153690
Resilience of Black Sea Bass Embryos to Increased Levels of Carbon Dioxide
Meseck Shannon L., Redman Dylan H., Mercaldo‐Allen Renee, Clark Paul, Rose Julie M., Perry Dean M.
Marine and Coastal Fisheries. 2022 14(2).
Experimental ocean acidification and food limitation reveals altered energy budgets and synergistic effects on mortality of larvae of a coastal fish
Siegfried Emma, Johnson Darren W.
Frontiers in Marine Science. 2023 10
Carbon Dioxide (2019)
Munday Philip L., Jarrold Michael D., Nagelkerken Ivan

Committee on Publication Ethics


Abstract Supplementary MaterialSupplementary Material (227 KB) Export Citation Get Permission