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- W2007378004 abstract "Abstracto1.Body fluids of six antarctic invertebrates are hyperosmotic to their normal environmental sea water during the late austral summer and winter. Pelagic and benthic species respond as osmoconformers to changes in salinity but regulate slightly hyperosmotically when returned to normal sea water. Adjustment of the amphipod Orchomene plebs Hurley to a concentration gradient requires a small but significant increase in energy output.2.Tolerance to supercooling and the extent of hyperosmotic regulation is greater in pelagic than in benthic species.3.Body fluids of antarctic invertebrates show equilibrium freezing points similar to ideal solutions while blood serum of the fish Trematomus bernacchi shows marked thermal hysteresis. The role of these resistance adaptations of antarctic marine fauna is discussed. Body fluids of six antarctic invertebrates are hyperosmotic to their normal environmental sea water during the late austral summer and winter. Pelagic and benthic species respond as osmoconformers to changes in salinity but regulate slightly hyperosmotically when returned to normal sea water. Adjustment of the amphipod Orchomene plebs Hurley to a concentration gradient requires a small but significant increase in energy output. Tolerance to supercooling and the extent of hyperosmotic regulation is greater in pelagic than in benthic species. Body fluids of antarctic invertebrates show equilibrium freezing points similar to ideal solutions while blood serum of the fish Trematomus bernacchi shows marked thermal hysteresis. The role of these resistance adaptations of antarctic marine fauna is discussed." @default.
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- W2007378004 date "1976-01-01" @default.
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- W2007378004 title "Resistance to freezing by antarctic fauna: Supercooling and osmoregulation" @default.
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- W2007378004 doi "https://doi.org/10.1016/s0300-9629(76)80114-4" @default.
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