Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 88 checked references that resolve
resolves10.1242/jeb.016782Metabolic and molecular stress responses of sublittoral bearded horse mussel<i>Modiolus barbatus</i>to warming sea water: implications for vertical zonation
resolves10.1086/660191Thermal Tolerance of Antarctic Notothenioid Fishes Correlates with Level of Circulating Hemoglobin
resolves10.1111/j.1365-2656.2011.01828.xBehaviour during elevated water temperatures: can physiology explain movement of juvenile Atlantic salmon to cool water?
resolves10.1029/2004JC002671Ocean model predictions of chemistry changes from carbon dioxide emissions to the atmosphere and ocean
resolves10.1038/20099Polar gigantism dictated by oxygen availability
resolves10.1038/nclimate1691Shrinking of fishes exacerbates impacts of global ocean changes on marine ecosystems
resolves10.3354/ame01187Effects of temperature on photosynthetic parameters and TEP production in eight species of marine microalgae
resolves10.2307/1542671Embryos at the Edge of Tolerance: Effects of Environment and Structure of Egg Masses on Supply of Oxygen to Embryos
resolves10.1093/icesjms/fsr074Potential impacts of future ocean acidification on marine ecosystems and fisheries: current knowledge and recommendations for future research
resolves10.1139/f99-147Effects of the spawning migration on the nutritional status of anadromous Atlantic salmon (<i>Salmo salar</i>): insights from stable-isotope analysis
resolves10.1086/592057Pacific Salmon in Hot Water: Applying Aerobic Scope Models and Biotelemetry to Predict the Success of Spawning Migrations
resolves10.1890/09-1987.1Can ocean acidification affect population dynamics of the barnacle Semibalanus balanoides at its southern range edge?
resolves10.4319/lo.2003.48.4.1498Local‐ and regional‐scale effects of wave exposure, thermal stress, and absolute versus effective shore level on patterns of intertidal zonation
resolves10.1038/416168aBacterial growth and primary production along a north–south transect of the Atlantic Ocean
resolves10.1086/BBLv217n1p73Linking Thermal Tolerances and Biogeography:<i>Mytilus edulis</i>(L.) at its Southern Limit on the East Coast of the United States
resolves10.3354/meps09550Field studies and projections of climate change effects on the bearded horse mussel Modiolus barbatus in the Gulf of Thermaikos, Greece
resolves10.1152/ajpregu.00793.2007Cadmium-dependent oxygen limitation affects temperature tolerance in eastern oysters (<i>Crassostrea virginica</i>Gmelin)
resolves10.1242/jeb.02268Mitochondrial mechanisms of cold adaptation in cod (<i>Gadus morhua</i>L.) populations from different climatic zones
resolves10.1242/jeb.008763An examination of the metabolic processes underpinning critical swimming in Atlantic cod (<i>Gadus morhua</i> L.) using <i>in vivo</i>31P-NMR spectroscopy
resolves10.1242/jeb.059899Thermal adaptation in the intertidal snail<i>Echinolittorina malaccana</i>contradicts current theory by revealing the crucial roles of resting metabolism
resolves10.1038/nclimate1473Coral resilience to ocean acidification and global warming through pH up-regulation
resolves10.3354/meps08137Interacting effects of elevated temperature and ocean acidification on the aerobic performance of coral reef fishes
resolves10.1093/icb/9.2.293Effect of Fluctuations in Temperature on the Metabolism of Intertidal Invertebrates
resolves10.4319/lo.2008.53.4.1562Body temperature during low tide alters the feeding performance of a top intertidal predator
resolves10.1007/s001140100216Climate change and temperature-dependent biogeography: oxygen limitation of thermal tolerance in animals
resolves10.1016/S1095-6433(02)00045-4Climate variations and the physiological basis of temperature dependent biogeography: systemic to molecular hierarchy of thermal tolerance in animals
resolves10.1086/423742Climate Variability and the Energetic Pathways of Evolution: The Origin of Endothermy in Mammals and Birds
resolves10.3354/meps07768Ecosystem effects of ocean acidification in times of ocean warming: a physiologist’s view
resolves10.1242/jeb.037523Oxygen- and capacity-limitation of thermal tolerance: a matrix for integrating climate-related stressor effects in marine ecosystems
resolves10.1126/science.1135471Climate Change Affects Marine Fishes Through the Oxygen Limitation of Thermal Tolerance
resolves10.1242/jeb.201.1.43Acid–Base Regulation, Metabolism and Energetics in <i>Sipunculus Nudus</i> As a Function of Ambient Carbon Dioxide Level
resolves10.1242/jeb.203.16.2417Modulation of the Cost of pHi Regulation During Metabolic Depression: A 31P-NMR Study in Invertebrate (<i>Sipunculus Nudus</i>) Isolated Muscle
resolves10.1007/s10872-004-5763-0Biological Impact of Elevated Ocean CO2 Concentrations: Lessons from Animal Physiology and Earth History
resolves10.1098/rstb.2006.1947Thermal limits and adaptation in marine Antarctic ectotherms: an integrative view
resolves10.3354/cr00766Cod and climate in a latitudinal cline: physiological analyses of climate effects in marine fishes
resolves10.1242/jeb.199.8.1801Metabolic Depression During Environmental Stress: The Role of Extracellular <i>Versus</i> Intracellular pH in <i>Sipunculus Nudus</i>
resolves10.1016/j.jembe.2009.02.001Oxygen limited thermal tolerance and performance in the lugworm Arenicola marina: A latitudinal comparison
resolves10.1093/icb/icr097Thermal Performance Curves, Phenotypic Plasticity, and the Time Scales of Temperature Exposure
resolves10.3354/cr00764Interactive effects of metal pollution and temperature on metabolism in aquatic ectotherms: implications of global climate change
resolves10.1016/j.marenvres.2012.04.003Energy homeostasis as an integrative tool for assessing limits of environmental stress tolerance in aquatic invertebrates
resolves10.1093/icb/ics084Natural Selection, Larval Dispersal, and the Geography of Phenotype in the Sea
resolves10.1242/jeb.030205Thermal tolerance of crustacean larvae (zoea I) in two different populations of the kelp crab<i>Taliepus dentatus</i>(Milne-Edwards)
resolves10.1139/f07-052Optimal growth temperature hypothesis: Why do anchovy flourish and sardine collapse or vice versa under the same ocean regime?
resolves10.3354/meps07407Multi-species regime shifts reflected in spawning temperature optima of small pelagic fish in the western North Pacific
resolves10.1093/icb/ics114Environmental Proteomics of the Mussel Mytilus: Implications for Tolerance to Stress and Change in Limits of Biogeographic Ranges in Response to Climate Change
resolves10.5194/bg-6-2207-2009Impact of anthropogenic ocean acidification on thermal tolerance of the spider crab
<i>Hyas araneus</i>
resolves10.3354/cr00763Indicators of oxygen- and capacity-limited thermal tolerance in the lugworm Arenicola marina
resolves10.1086/665328A Role for Oxygen Delivery and Extracellular Magnesium in Limiting Cold Tolerance of the Sub-Antarctic Stone Crab<i>Paralomis granulosa</i>?
resolves10.1242/jeb.014613Oxygen profiles in egg masses predicted from a diffusion–reaction model
resolves10.1007/s00227-012-2073-8The synergistic effects of increasing temperature and CO2 levels on activity capacity and acid–base balance in the spider crab, Hyas araneus
The 5 references without a DOI — listed, not checked
no DOI — not checkedAnestis A, Lazou A, Pörtner HO, Michaelidis B (2007) Behavioural, metabolic and molecular stress indicators in the marine bivalve Mytilus galloprovincialis during long-term acclimation at increasing ambient temperature. Am J Physiol 293:R911-R921
no DOI — not checkedEppley RW (1972) Temperature and phytoplankton growth in the sea. Fish Bull 70:1063-1085
no DOI — not checkedKnoll AH, Fischer WW (2011) Skeletons and ocean chemistry: the long view. In: Gattuso JP, Hansson L (eds) Ocean acidification. Oxford University Press, Oxford, p 67–82
no DOI — not checkedPörtner HO (1982) Biochemische und physiologische Anpassungen an das Leben im marinen Sediment: Untersuchungen am Spritzwurm Sipunculus nudus L. PhD thesis, University of Düsseldorf
no DOI — not checkedPörtner HO, Lannig G (2009) Oxygen and capacity limited thermal tolerance. In: Richards JG, Farrell AP, Brauner CJ (eds) Fish physiology, Vol 27. Hypoxia. Academic Press, Burlington, MA, p 143-191
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