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

Articles citing this paper

Age and growth studies on barramundi, Lates calcarifer (Bloch), in Northern Australia

TLO Davis and GP Kirkwood
35(6) pp.673 - 689


25 articles found in Crossref database.

Fish Utilisation of Wetland Nurseries with Complex Hydrological Connectivity
Davis Ben, Johnston Ross, Baker Ronald, Sheaves Marcus, Browman Howard
PLoS ONE. 2012 7(11). p.e49107
Do contemporary age-growth models overlook life-history complexities in protandrous fishes? A case study on the large protandrous polynemid, the giant African threadfin Polydactylus quadrifilis
Butler Edward C., Childs Amber-Robyn, Milner Marianne V., Farthing Matthew W., Duncan Murray I., Winkler Alexander C., Potts Warren M.
Fisheries Research. 2021 233 p.105770
A temperature compensated von bertalanffy growth model for tagged red drum and black drum in Texas bays
Doerzbacher J.F., Green A.W., Matlock G.C., Osburn H.R.
Fisheries Research. 1988 6(2). p.135
Use of otolith chemistry and acoustic telemetry to elucidate migratory contingents in barramundi Lates calcarifer
Crook D. A., Buckle D. J., Allsop Q., Baldwin W., Saunders T. M., Kyne P. M., Woodhead J. D., Maas Roland, Roberts Brien, Douglas M. M.
Marine and Freshwater Research. 2017 68(8). p.1554
Assessing the use of sectioned otoliths and other methods to determine the age of the centropomid fish, barramundi (Lates calcarifer) (Bloch), using known-age fish
Mc Dougall Andrew
Fisheries Research. 2004 67(2). p.129
Temporal changes in the fish fauna entering a tidal swamp system in tropical Australia
Davis Timothy L.O
Environmental Biology of Fishes. 1988 21(3). p.161
Variable growth rates of the tropical estuarine fish barramundi Lates calcarifer (Bloch) under different freshwater flow conditions
Robins J., Mayer D., Staunton‐Smith J., Halliday I., Sawynok B., Sellin M.
Journal of Fish Biology. 2006 69(2). p.379
River flows affect the growth of a tropical finfish in the wet-dry rivers of northern Australia, with implications for water resource development
Leahy Susannah M., Robins Julie B.
Hydrobiologia. 2021 848(18). p.4311
The production and trophic ecology of shallow-water fish assemblages in southern Australia I. Species richness, size-structure and production of fishes in Western Port, Victoria
Edgar Graham J., Shaw Craig
Journal of Experimental Marine Biology and Ecology. 1995 194(1). p.53
Annulus formation on scales and seasonal growth of the Central Amazonian anostomid Schizodon fasciatus
Fabré N. N., Saint‐Paul U.
Journal of Fish Biology. 1998 53(1). p.1
Dubious analyses or different rivers? A comment on the growth of barramundi
Stuart Ivor G, McKillup Stephen
Fisheries Research. 2004 68(1-3). p.373
Tropical Fish Otoliths: Information for Assessment, Management and Ecology (2009)
Moltschaniwskyj Natalie, Cappo Mike
Use of a fishery model (FAST) to explain declines in the stocked barramundi (Lates calcarifer) (Bloch) fishery in Lake Tinaroo, Australia
McDougall Andrew J., Pearce Malcolm G., MacKinnon Mal
Lakes & Reservoirs: Science, Policy and Management for Sustainable Use. 2008 13(2). p.125
Maximum likelihood estimation of growth and growth variability from tagging data
Francis R. I. C. C.
New Zealand Journal of Marine and Freshwater Research. 1988 22(1). p.43
Survival and growth of fish (Lates calcarifer) under integrated mangrove-aquaculture and open-aquaculture systems
Venkatachalam Shanmugaarasu, Kandasamy Kathiresan, Krishnamoorthy Ilanchelian, Narayanasamy Rajendran
Aquaculture Reports. 2018 9 p.18
Environmental factors influencing the occurrence of juvenile fish in the mangroves of Pagbilao, Philippines
Pinto Leonard
Hydrobiologia. 1987 150(3). p.283
Early prediction of long-term family growth performance based on cellular processes — A tool to expedite the establishment of superior foundation broodstock in breeding programs
Domingos Jose A., Smith-Keune Carolyn, Harrison Paul, Jerry Dean R.
Aquaculture. 2014 428-429 p.88
Variability in the growth, feeding and condition of barramundi (Lates calcarifer Bloch) in a northern Australian coastal river and impoundment
Russell D. J., Thomson F. E., Thuesen P. A., Power T. N., Mayer R. J.
Marine and Freshwater Research. 2015 66(10). p.928
Genetic variability, local selection and demographic history: genomic evidence of evolving towards allopatric speciation in Asian seabass
Wang Le, Wan Zi Yi, Lim Huan Sein, Yue Gen Hua
Molecular Ecology. 2016 25(15). p.3605
Age, growth, and reproductive biology of the Waigieu seaperch Psammoperca waigiensis (Perciformes: Latidae) around Okinawa Island, Japan
Shimose Tamaki, Tachihara Katsunori
Ichthyological Research. 2006 53(2). p.166
Historical reconstruction and social context of recreational fisheries: The Australian East Coast Barramundi
Chong‐Montenegro Carolina, Thurstan Ruth H., Campbell Alexander B., Cunningham Emer T., Pandolfi John M.
Fisheries Management and Ecology. 2022 29(1). p.44
Migration patterns in barramundi, Lates calcarifer (Bloch), in Van Diemen Gulf, Australia, with estimates of fishing mortality in specific areas
Davis T.L.O.
Fisheries Research. 1986 4(3-4). p.243
Movement of juvenile barramundi (Lates calcarifer) through a cone ramp fishway at a modified coastal wetland in central Queensland, Australia
Power Trent, Moore Matthew, McCann Jack
Pacific Conservation Biology. 2019 25(4). p.421
Partial migration in diadromous fishes drives the allocation of subsidies across the freshwater-marine ecotone
Saboret Grégoire, Buckle Duncan J., King Alison J., Douglas Michael M., Crook David A.
Animal Migration. 2021 8(1). p.40
Growth Models with Corrections for the Retardative Effects of Tagging
Xiao Yongshun
Canadian Journal of Fisheries and Aquatic Sciences. 1994 51(2). p.263

Committee on Publication Ethics


Abstract Export Citation Get Permission