Parameterizing and operationalizing zooplankton population dynamic and trophic interaction models

Plourde, S., and Browman, H. I. 2014. Parameterizing and operationalizing zooplankton population dynamic and trophic interaction models. – ICES Journal of Marine Science, 71: 234–235. This themed set (TS) of articles was motivated by the need for modellers and biologists–ecologists to work more clos...

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Published inICES journal of marine science Vol. 71; no. 2; pp. 234 - 235
Main Authors Plourde, Stéphane, Browman, Howard I.
Format Journal Article
LanguageEnglish
Published 01.01.2014
Subjects
Online AccessGet full text
ISSN1054-3139
1095-9289
1095-9289
DOI10.1093/icesjms/fst214

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Abstract Plourde, S., and Browman, H. I. 2014. Parameterizing and operationalizing zooplankton population dynamic and trophic interaction models. – ICES Journal of Marine Science, 71: 234–235. This themed set (TS) of articles was motivated by the need for modellers and biologists–ecologists to work more closely together to produce more realistic simulation models of zooplankton population dynamics and trophic interactions. The TS was intended to cover a broad range of subjects and potential approaches, including identifying crucial gaps in our knowledge and parameterization of biological/physiological processes, experimental/fieldwork aimed at quantifying the response of key physiological and behavioural processes to variations in the environment, identifying novel modelling approaches that would enable the development of simulation models that would minimize the need for species-specific (and stage-specific) model parameterization, etc. Five articles were accepted for inclusion in the TS. They cover the majority of these themes. TSs are intended to be instrumental in focusing attention, triggering opinions, and stimulating ideas, discussion and activity in specific research fields. We hope that this TS has achieved that.
AbstractList This themed set (TS) of articles was motivated by the need for modellers and biologists-ecologists to work more closely together to produce more realistic simulation models of zooplankton population dynamics and trophic interactions. The TS was intended to cover a broad range of subjects and potential approaches, including identifying crucial gaps in our knowledge and parameterization of biological/physiological processes, experimental/fieldwork aimed at quantifying the response of key physiological and behavioural processes to variations in the environment, identifying novel modelling approaches that would enable the development of simulation models that would minimize the need for species-specific (and stage-specific) model parameterization, etc. Five articles were accepted for inclusion in the TS. They cover the majority of these themes. TSs are intended to be instrumental in focusing attention, triggering opinions, and stimulating ideas, discussion and activity in specific research fields. We hope that this TS has achieved that.
Plourde, S., and Browman, H. I. 2014. Parameterizing and operationalizing zooplankton population dynamic and trophic interaction models. – ICES Journal of Marine Science, 71: 234–235. This themed set (TS) of articles was motivated by the need for modellers and biologists–ecologists to work more closely together to produce more realistic simulation models of zooplankton population dynamics and trophic interactions. The TS was intended to cover a broad range of subjects and potential approaches, including identifying crucial gaps in our knowledge and parameterization of biological/physiological processes, experimental/fieldwork aimed at quantifying the response of key physiological and behavioural processes to variations in the environment, identifying novel modelling approaches that would enable the development of simulation models that would minimize the need for species-specific (and stage-specific) model parameterization, etc. Five articles were accepted for inclusion in the TS. They cover the majority of these themes. TSs are intended to be instrumental in focusing attention, triggering opinions, and stimulating ideas, discussion and activity in specific research fields. We hope that this TS has achieved that.
Author Plourde, Stéphane
Browman, Howard I.
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Cites_doi 10.1093/icesjms/fst125
10.1093/icesjms/fst049
10.1093/icesjms/fst147
10.1093/icesjms/fst023
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10.1093/icesjms/fst212
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References Maps (2019081301474314200_FST214C4) 2014; 71
Chust (2019081301474314200_FST214C1) 2014; 71
Plourde (2019081301474314200_FST214C5) 2014; 71
Daewel (2019081301474314200_FST214C3) 2014; 71
Record (2019081301474314200_FST214C7) 2014; 71
Cropp (2019081301474314200_FST214C2) 2014; 71
Record (2019081301474314200_FST214C6) 2014; 71
References_xml – volume: 71
  start-page: 254
  year: 2014
  ident: 2019081301474314200_FST214C3
  article-title: Predation control of zooplankton dynamics: a review of observations and models
  publication-title: ICES Journal of Marine Science
  doi: 10.1093/icesjms/fst125
– volume: 71
  start-page: 236
  year: 2014
  ident: 2019081301474314200_FST214C6
  article-title: The paradox of “the paradox of the plankton”
  publication-title: ICES Journal of Marine Science
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– volume: 71
  start-page: 241
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  ident: 2019081301474314200_FST214C1
  article-title: Are Calanus spp. shifting poleward in the North Atlantic? A habitat modelling approach
  publication-title: ICES Journal of Marine Science
  doi: 10.1093/icesjms/fst147
– volume: 71
  start-page: 272
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  ident: 2019081301474314200_FST214C5
  article-title: Daytime depth and thermal habitat of two sympatric krill species in response to surface salinity variability in the Gulf of St Lawrence, eastern Canada
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– volume: 71
  start-page: 282
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  article-title: Modelling the influence of daytime distribution on the transport of two sympatric krill species (Thysanoessa raschii and Meganyctiphanes norvegica) in the Gulf of St Lawrence, eastern Canada
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– volume: 71
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  article-title: Comment on “The paradox of the ‘paradox of the plankton’” by Record et al
  publication-title: ICES Journal of Marine Science
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  article-title: Plankton post paradox
  publication-title: ICES Journal of Marine Science
  doi: 10.1093/icesjms/fst213
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SubjectTerms Behavioural
Computer simulation
Dynamics
Focusing
Marine
Parametrization
Zooplankton
Title Parameterizing and operationalizing zooplankton population dynamic and trophic interaction models
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