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Cryobiology|September 6, 2005
The mechanism by which fish antifreeze proteins cause thermal hysteresisErlend Kristiansen, Karl Erik ZachariassenMarine Environmental Research|August 12, 2011
Physiological effects of hypercapnia in the deep-sea bivalve Acesta excavata (Fabricius, 1779) (Bivalvia; Limidae)Karen M Hammer, Erlend Kristiansen, Karl Erik ZachariassenCryobiology|April 20, 2004
Inorganic ions in cold-hardinessKarl Erik Zachariassen, Erlend Kristiansen, Sindre Andre PedersenCryobiology|August 16, 2008
Salt-induced enhancement of antifreeze protein activity: a salting-out effectErlend Kristiansen, Sindre Andre Pedersen, Karl Erik ZachariassenCryobiology|August 2, 2002
Effect of ice fraction and dilution factor on the antifreeze activity in the hemolymph of the cerambycid beetle Rhagium inquisitorKarl Erik Zachariassen, Arthur L DeVries, Ben Hunt, et al.FEBS Letters|April 1, 2014
Antifreeze activity enhancement by site directed mutagenesis on an antifreeze protein from the beetle Rhagium mordaxDennis Steven Friis, Erlend Kristiansen, Nicolas von Solms, et al.Cryobiology|May 26, 2004
Ice nucleation in solutions and freeze-avoiding insects-homogeneous or heterogeneous?Karl Erik Zachariassen, Erlend Kristiansen, Sindre Andre Pedersen, et al.Protein Science : a Publication of the Protein Society|March 22, 2014
Low thermodynamic but high kinetic stability of an antifreeze protein from Rhagium mordaxDennis S Friis, Johannes L Johnsen, Erlend Kristiansen, et al.Journal of Insect Physiology|April 23, 2011
Do ice nucleating lipoproteins protect frozen insects against toxic chemical agents?Janett Trautsch, Bjørn Olav Rosseland, Sindre Andre Pedersen, et al.Journal of Insect Physiology|June 30, 2006
Cold hardiness in relation to trace metal stress in the freeze-avoiding beetle Tenebrio molitorSindre A Pedersen, Erlend Kristiansen, Bjørn H Hansen, et al.Pageof 2