Effects of hypoxia on metabolic functions in marine organisms: Observed patterns and modelling assumptions within the context of Dynamic Energy Budget (DEB) theory
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Summary
A set of stylized biological facts are proposed which give a broad generalization of the effects of hypoxia on metabolic functions based on empirical findings and are validated on marine species for which experimental datasets under hypoxic conditions and DEB parameters were available.
- Type
- article
- Published
- 2019-01-01
- Cited by
- 63
- References
- 115
- Access
- Open access
- OpenAlex
- https://openalex.org/W2801643971
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:90210984
Keywords
Hypoxia (environmental), Biology, Marine ecosystem, Ecology, Marine invertebrates
References
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Cited by
- A new phase in DEB research
- Modeling the impact of hypoxia on the energy budget of Atlantic cod in two populations of the Gulf of Saint-Lawrence, Canada
- Predicting the energy budget of the scallop Argopecten purpuratus in an oxygen–limiting environment
- Adverse impacts of hypoxia on aquatic invertebrates: A meta-analysis.
- SEDIMENT OXYGEN CONSUMPTION AND HYDROGEN SULFIDE RELEASE IN HYPOXIC AREAS OF GAMAK BAY, KOREA
- Effects of hypoxia on survival, behavior, metabolism and cellular damage of Manila clam (Ruditapes philippinarum)
- Stress across life stages: Impacts, responses and consequences for marine organisms.
- A new indicator of hypoxia tolerance in abalone, developed based on heart rate fluctuations
- Particle Dynamics in Ushuaia Bay (Tierra del Fuego)-Potential Effect on Dissolved Oxygen Depletion
- Nitrogen loss process in hypoxic seawater based on the culture experiment.
- Pelagiella exigua, an early Cambrian stem gastropod with chaetae: lophotrochozoan heritage and conchiferan novelty
- Comprehensive Analysis of mRNA and lncRNA Transcriptomes Reveals the Differentially Hypoxic Response of Preadipocytes During Adipogenesis
- Dynamic energy budget of endemic and critically endangered bivalve Pinna nobilis: A mechanistic model for informed conservation
- Oxygen limitation may affect the temperature and size dependence of metabolism in aquatic ectotherms
- Hypoxia tolerance, hematological, and biochemical response in juvenile turbot (Scophthalmus maximus. L)
- Bioenergetics in environmental adaptation and stress tolerance of aquatic ectotherms: linking physiology and ecology in a multi-stressor landscape
- Hypoxia in the Persian Gulf and the Strait of Hormuz.
- The bacterial diversity and community composition altered in the oxygen minimum zone of the Tropical Western Pacific Ocean
- Ecological Leverage Points: Species Interactions Amplify the Physiological Effects of Global Environmental Change in the Ocean.
- Hypoxia exerts oxidative stress and changes in expression of antioxidant enzyme genes in gills of Mytilus galloprovincialis (Lamarck, 1819)
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