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  2. Stock assessment - Wikipedia

    en.wikipedia.org/wiki/Stock_assessment

    Fish stocks indicators, which is normalized as a 0–100 proximity-to-target score, with 100 representing "at target" and 0 being furthest from the target. Stock assessments provide fisheries managers with the information that is used in the regulation of a fish stock. Biological and fisheries data are collected in a stock assessment.

  3. Fish stocks - Wikipedia

    en.wikipedia.org/wiki/Fish_stocks

    Fish stocks are subpopulations of a particular species of fish, for which intrinsic parameters (growth, recruitment, mortality and fishing mortality) are traditionally regarded as the significant factors determining the stock's population dynamics, while extrinsic factors (immigration and emigration) are traditionally ignored.

  4. Population dynamics of fisheries - Wikipedia

    en.wikipedia.org/wiki/Population_dynamics_of...

    Constant catch and constant fishing mortality are two types of simple harvest control rules. [22] Biological overfishing occurs when fishing mortality has reached a level where the stock biomass has negative marginal growth (slowing down biomass growth), as indicated by the red area in the figure. Fish are being taken out of the water so ...

  5. Catch per unit effort - Wikipedia

    en.wikipedia.org/wiki/Catch_Per_Unit_Effort

    This means that decisions about stock management can also be made by the people doing the harvesting. [1] The best practice is to standardise the effort employed ( e.g. number of traps or duration of searching), which controls for the reduction in catch size that often results from subsequent efforts.

  6. Fish mortality - Wikipedia

    en.wikipedia.org/wiki/Fish_mortality

    Fishing mortality (F) can be estimated by dividing the catch by the mean stock size. The catch includes annual commercial and recreational landings, along with dead discards. Bycatch discards would be estimated by estimating the percent of fish that are captured in a certain gear and the mortality associated with being captured in this gear.

  7. Otolith microchemical analysis - Wikipedia

    en.wikipedia.org/wiki/Otolith_microchemical_analysis

    These discrete layers create a temporal record of the water in which the fish has inhabited. There are 3 pairs of otoliths in bony fish, but only the largest, known as the saggita, is commonly used for microchemical analysis. The core of the otolith corresponds to the earliest larval period of the fish's life.

  8. Virtual population analysis - Wikipedia

    en.wikipedia.org/wiki/Virtual_Population_Analysis

    Virtual population analysis was introduced in fish stock assessment by Gulland in 1965 based on older work. The technique of cohort reconstruction in fish populations has been attributed to several different workers including Professor Baranov from Russia in 1918 for his development of the continuous catch equation, Professor Fry from Canada in ...

  9. Atlantic menhaden - Wikipedia

    en.wikipedia.org/wiki/Atlantic_menhaden

    The latest stock assessment, published in early 2015, indicates that the stock is not currently subject to overfishing and has not been at an overfished population level since the 1990s. [30] The ASMFC unanimously accepted the stock assessment to use for management in May 2015 and increased the TAC to 187,880 metric tons (414,204,498 pounds).