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 27 checked references that resolve
resolves10.1016/0272-7714(85)90116-7Macrofaunal involvement in the sublittoral decay of kelp debris: The sea urchin Psammechinus miliaris (Gmelin) (Echinodermata: Echinoidea)
resolves10.2307/1543456Respiratory and Acid-Base Physiology of the Purple Sea Urchin,<i>Strongylocentrotus purpuratus</i>, During Air Exposure: Presence and Function of a Facultative Lung
resolves10.1086/physzool.57.1.30155977Physiological Compensation to Short-Term Air Exposure in Red Rock Crabs, Cancer productus Randall, from Littoral and Sublittoral Habitats. II. Acid-Base Balance
resolves10.1126/science.1097329Impact of Anthropogenic CO
<sub>2</sub>
on the CaCO
<sub>3</sub>
System in the Oceans
resolves10.1017/S0025315402006276Can low sea urchin densities control macro-epiphytic biomass in a north-east Atlantic maerl bed ecosystem (Bay of Brest, Brittany, France)?
resolves10.1242/jeb.94.1.269The Role Of CaCO3 Dissolution as A Source of HCO3− for the Buffering of Hypercapnic Acidosis in Aquatic and Terrestrial Decapod Crustaceans
resolves10.2307/1539873OXYGEN UPTAKE AND RESPONSES TO RESPIRATORY STRESS IN SEA URCHINS
resolves10.3354/meps274161Effects of increased atmospheric CO2 on sea urchin early development
resolves10.1016/j.marpolbul.2004.05.005Effects of raised CO2 concentration on the egg production rate and early development of two marine copepods (Acartia steueri and Acartia erythraea)
resolves10.3354/meps293109Effects of long-term moderate hypercapnia on acid-base balance and growth rate in marine mussels Mytilus galloprovincialis
resolves10.1038/35021000Atmospheric carbon dioxide concentrations over the past 60 million years
resolves10.1007/s10872-004-5763-0Biological Impact of Elevated Ocean CO2 Concentrations: Lessons from Animal Physiology and Earth History
resolves10.1038/35030078Reduced calcification of marine plankton in response to increased atmospheric CO2
resolves10.1007/BF00349148Oxygen and acid-base status of the sea urchin Psammechinus miliaris during environmental hypoxia
resolves10.1007/BF00392560Acid-base status in the sea urchins Psammechinus miliaris and Echinus esculentus (Echinodermata: Echinoidea) during emersion
resolves10.1016/0300-9629(91)90429-GAcid-base disturbances in the haemolymph of the prawns, Palaemon elegans (Rathke) and P. serratus (Pennant) (Crustacea: Decapoda) during exposure to hypoxia
resolves10.1242/jeb.64.1.45Carbon dioxide combining properties of the blood of the shore crab <i>Carcinus maenas</i> (L.): carbon dioxide solubility coefficient and carbonic acid dissociation constants
The 10 references without a DOI — listed, not checked
no DOI — not checked10.1016/j.marpolbul.2006.09.021_bib4
no DOI — not checkedThe respiratory physiology of echinoderms
no DOI — not checkedGibbins, J., Haszeldine. S., Holloway, S., Pearce, J., Oakey, J,, Shackley, S., Turley, C.. 2005. Scope for future CO2 emission reductions from electricity generation through the deployment of carbon capture and storage technologies. In: Proceedings of the Avoiding Dangerous Climate Change Conference, Exeter, 1–3 February 2005.
no DOI — not checkedHoughton, J.T., Ding, Y., Griggs, D.J., Noguer, M., van der Linden, P.J., Dai, X., Maskell, K., Johnson, C.A., 2001. Climate change 2001: The scientific basis. In: IPCC Third assessment report: Climate Change 2001. Cambridge University Press, Cambridge, p. 944.
no DOI — not checkedAcid–base balance in the sea mussel Mytilus edulis. Effects of environmental hypercapnia on intra and extracellular acid–base balance
no DOI — not checkedOrmerod, B., Angel, M.V., 1996. Ocean storage of carbon dioxide. In: Ormerod, B., Angel, M.V. (Eds.), Workshop 2: Environmental impact. International Energy Agency, Greenhouse Gas R&D Program, Cheltenham, pp. 9–40.
no DOI — not checkedRaven, J., Caldeira, K., Elderfield, H., Hoegh-Guldberg, O., Liss, P., Riebesell, U., Shepherd, J., Turley, C., Watson, A., 2005. Ocean acidification due to increasing atmospheric carbon dioxide. The Royal Society policy document 12/05. The Clyvedon Press Ltd., Cardiff, UK.
no DOI — not checkedMarine biotic response to elevated carbon dioxide
no DOI — not checkedSpicer, J.I., Raffo, A., Widdicombe, S., in press. Influence of CO2-related seawater acidification on extracellular acid-base balance in the velvet swimming crab Necora puber. Marine Biology.
no DOI — not checkedReviewing the impact of increased atmospheric CO2 on oceanic pH and the marine ecosystem
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