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Acta Medica Scandinavica. Supplementum|January 1, 1986
Hormonal responses to treatment of high blood pressure with low-salt diet alone and combined with added potassiumI Os, S E Kjeldsen, A Westheim, et al.Annals of Botany|August 12, 2005
Kinetics of ethanol and acetaldehyde release suggest a role for acetaldehyde production in tolerance of rice seedlings to micro-aerobic conditionsE I Boamfa, A H Veres, P C Ram, et al.Acta Medica Scandinavica|January 1, 1986
The effect of sodium depletion and potassium supplementation on vasopressin, renin and catecholamines in hypertensive menI Os, S E Kjeldsen, A Westheim, et al.Thrombosis and Haemostasis|October 21, 1986
Increased plasma noradrenaline during severe sodium restriction does not stimulate platelet release in essential hypertensionS E Kjeldsen, K Lande, K Gjesdal, et al.Oral Surgery, Oral Medicine, Oral Pathology and Oral Radiology|October 20, 2022
Patient satisfaction and impact of salivary flow rate on effectiveness of xerostomia productsM J Purdie, M D Carpenter, J L Noll, et al.The Journal of Physiology|August 2, 2000
Membrane-delimited coupling between sigma receptors and K+ channels in rat neurohypophysial terminals requires neither G-protein nor ATPP J Lupardus, R A Wilke, E Aydar, et al.The Plant Journal : for Cell and Molecular Biology|January 22, 2003
De-submergence-induced ethylene production in Rumex palustris: regulation and ecophysiological significanceL A C J Voesenek, M B Jackson, A H W Toebes, et al.Science (New York, N.Y.)|November 3, 2001
Synaptotagmin modulation of fusion pore kinetics in regulated exocytosis of dense-core vesiclesC T Wang, R Grishanin, C A Earles, et al.Planta|December 21, 2006
Patterns of peroxidative ethane emission from submerged rice seedlings indicate that damage from reactive oxygen species takes place during submergence and is not necessarily a post-anoxic phenomenonI E Santosa, P C Ram, E I Boamfa, et al.Journal of Immunology (Baltimore, Md. : 1950)|May 9, 2001
Fundamental Ca2+ signaling mechanisms in mouse dendritic cells: CRAC is the major Ca2+ entry pathwayHsu Sf, P J O'Connell, V A Klyachko, et al.Pageof 16