Optimal Fishing Mortalities with Age-Structured Bioeconomic Model - A Case of NEA Mackerel
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[1] Luis T. Antelo,et al. Selectivity, Pulse Fishing and Endogenous Lifespan in Beverton-Holt Models , 2012 .
[2] Raouf Boucekkine,et al. Optimal control of age-structured populations in economy, demography, and the environment , 2010 .
[3] Hydrography and mackerel distribution on the shelf edge west of the Norwegian deeps , 2001 .
[4] W. Ricker. Stock and Recruitment , 1954 .
[5] P. Yodzis,et al. Predator-Prey Theory and Management of Multispecies Fisheries , 1994 .
[6] Milner B. Schaefer. Some aspects of the dynamics of populations important to the management of the commercial marine fisheries , 1991 .
[7] H. Rosenthal,et al. PREDATOR-PREY RELATIONSHIP BETWEEN PACIFIC HERRING, CLUPEA HARENGUS PALLASI, LARVAE AND A PREDATORY HYPERIID AMPHIPOD, HYPEROCHE MEDUSARUM 1 , 1976 .
[8] C. Walters,et al. Quantitative fisheries stock assessment: Choice, dynamics and uncertainty , 2004, Reviews in Fish Biology and Fisheries.
[9] M. Heino,et al. Is size-dependent pricing prevalent in fisheries? The case of Norwegian demersal and pelagic fisheries , 2013 .
[10] D. Skagen,et al. Development of a stock - recruit model for simulating stock dynamics for uncertain situations: the example of Northeast Atlantic mackerel (Scomber scombrus) , 2011 .
[11] P. H. Leslie. On the use of matrices in certain population mathematics. , 1945, Biometrika.
[12] J. Horwood. A calculation of optimal fishing mortalities , 1987 .
[13] C. Clark. Mathematical Bioeconomics: The Mathematics of Conservation , 2010 .
[14] P. F. Major,et al. Predator-prey interactions in two schooling fishes, Caranx ignobilis and Stolephorus purpureus , 1978, Animal Behaviour.
[15] Rögnvaldur Hannesson,et al. Fishery dynamics: a North Atlantic cod fishery , 1975 .
[16] D. Skagen. Growth patterns in the North Sea and western mackerel in Norwegian catches 1960- 85 , 1989 .
[17] Al-Amin M. Ussif,et al. A Bioeconomic Analysis of the Norwegian Spring Spawning Herring (NSSH) Stock , 2004, Marine Resource Economics.
[18] T. Benton,et al. The population response to environmental noise: population size, variance and correlation in an experimental system , 2002 .
[19] S. Steinshamn. A Conceptional Analysis of Dynamics and Production in Bioeconomic Models , 2011 .
[20] João Nicolau. STATIONARY PROCESSES THAT LOOK LIKE RANDOM WALKS— THE BOUNDED RANDOM WALK PROCESS IN DISCRETE AND CONTINUOUS TIME , 2002, Econometric Theory.
[21] O. Tahvonen. HARVESTING AN AGE‐STRUCTURED POPULATION AS BIOMASS: DOES IT WORK? , 2008 .
[22] Wayne M. Getz,et al. Population harvesting: demographic models of fish, forest, and animal resources. , 1990 .
[23] Carl J. Walters,et al. A Generalized Computer Simulation Model for Fish Population Studies , 1969 .
[24] M. Koulouris. Fishing down the marine food webs in the Hellenic seas , 2015 .
[25] G. Gorsky,et al. Inter-annual fluctuations of zooplankton communities in the Bay of Villefranche-sur-mer from 1995 to 2005 (Northern Ligurian Sea, France) , 2011 .
[26] Olli Tahvonen,et al. Economics of harvesting age-structured fish populations. , 2009 .