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首页> 外文期刊>Journal of sea research >Modelling mussel growth in ecosystems with low suspended matter loads using a Dynamic Energy Budget approach
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Modelling mussel growth in ecosystems with low suspended matter loads using a Dynamic Energy Budget approach

机译:使用动态能量预算方法对低悬浮物负荷的生态系统中的贻贝生长进行建模

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摘要

The environmental and the economic importance of shellfish stimulated a great deal of studies on their physiology over the last decades, with many attempts to model their growth. The first models developed to simulate bivalve growth were predominantly based on the Scope For Growth (SFG) paradigm. In the last years there has been a shift towards the Dynamic Energy Budget (DEB) paradigm. The general objective of this work is contributing to the evaluation of different approaches to simulate bivalve growth in low seston waters by: (i) implementing a model to simulate mussel growth in low suspended matter ecosystems based on the DEB theory (Kooijman, S.A.L.M., 2000. Dynamic and energy mass budgets in biological systems, Cambridge University Press); (ii) comparing and discussing different approaches to simulate feeding processes, in the light of recently published works both on experimental physiology and physiology modeling; (iii) comparing and discussing results obtained with a model based on EMMY (Scholten and Smaal, 1998). The model implemented allowed to successfully simulate mussel feeding and shell length growth in two different Galician Rias. Obtained results together with literature data suggest that modeling of bivalve feeding should incorporate physiologic feed-backs related with food digestibility. In spite of considerable advances in bivalve modeling a number of issues is yet to be resolved, with emphasis on the way food sources are represented and feeding processes formulated.
机译:在过去的几十年中,贝类的环境和经济重要性激发了许多关于其生理的研究,并进行了许多模拟其生长的尝试。最初开发的用于模拟双壳类动物生长的模型主要基于“生长范围”(SFG)范式。在过去的几年中,已经向动态能源预算(DEB)模式转变。这项工作的总体目标是通过以下方法来评估不同的方法,以模拟低塞斯顿水域中双壳类的生长:(i)基于DEB理论实施一个模型以模拟低悬浮物生态系统中的贻贝生长(Kooijman,SALM,2000年)生物系统的动态和能量质量预算,剑桥大学出版社); (ii)根据最近发表的有关实验生理学和生理学建模的著作,比较和讨论模拟进食过程的不同方法; (iii)比较和讨论使用基于EMMY的模型获得的结果(Scholten和Smaal,1998年)。实施的模型可以成功模拟两种不同加利西亚里亚斯的贻贝饲养和壳长增长。获得的结果以及文献数据表明,双壳类动物饲养的建模应考虑与食物消化率有关的生理反馈。尽管双壳动物模型取得了长足的进步,但仍有许多问题尚待解决,重点是食物来源的表示方式和喂养过程的制定。

著录项

  • 来源
    《Journal of sea research》 |2012年第1期|p.44-57|共14页
  • 作者单位

    University Fernando Pessoa, CIACEB, 349 Praca 9 de Abril, 4249-004 Porto, Portugal,Interdisciplinary Centre for Marine and Environmental Research—CIIMAR, Rua dos Bragas, 289,4050-123 Porto, Portugal;

    Consejo Superior de Investigations Cientificas. Instituto de Investigations Marinas, Eduardo Cabello 6, 36208 Vigo, Spain;

    Consejo Superior de Investigations Cientificas. Instituto de Investigations Marinas, Eduardo Cabello 6, 36208 Vigo, Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    mussel growth; modeling; individual based models; DEB; low seston; calician rias;

    机译:贻贝生长造型;基于个人的模型;DEB;低塞斯顿加里西亚里亚斯;

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