Predicting biological invasions in marine habitats through eco-physiological mechanistic models: a case study with the bivalve Brachidontes pharaonis
Academic Article
Publication Date:
2013
abstract:
Aim We used a coupled biophysical ecology (BE)-physiological mechanistic modelling approach based on the Dynamic Energy Budget theory (DEB, Dynamic energy budget theory for metabolic organisation, 2010, Cambridge University Press, Cambridge; DEB) to generate spatially explicit predictions of physiological performance (maximal size and reproductive output) for the invasive mussel, Brachidontes pharaonis.
Iris type:
01.01 Articolo in rivista
Keywords:
Bivalves; Dynamic Energy Budget model; fundamental niche; inva; life-history traits; Mediterranean Sea
List of contributors:
Montalto, Valeria; Rinaldi, Alessandro
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