The 13 references in paper S. Petrikov S., V. Krylov V., A. Solodov A., Yu. Titova V., Kh. Guseinova T., L. Khamidova T., С. Петриков С., В. Крылов В., А. Солодов А., Ю. Титова В., Х. Гусейнова Т., Л. Хамидова Т. (2008) “Влияние гиперосмолярных растворов на оксигенацию и метаболизм головного мозга // Effect of Hyperosmolar Solutions on Cerebral Oxygenation and Metabolism” / spz:neicon:reanimatology:643

1
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Bhardwaj A., Ulatowski J. A. Cerebral Edema: Hypertonic saline solutions. Curr. Treat. Options Neurol. 1999; 1 (3): 179—188.
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Петриков С. С., Крылов В. В., Солодов А. А. Влияние гиперосмолярных растворов на внутричерепное давление, церебральную оксигенацию и центральную гемодинамику у больных с внутричерепными кровоиз! лияниями. Вестн. интенс. терапии 2007; 2: 61—65.
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Pellerin L. How astrocytes feed hungry neurons. Molecular Neurobiology 2005; 32 (1): 59—72.
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Bonvento G., Herard A., VoutsinosVPorche B.The astrocyte!neuron lactate shuttle: a debated but still valuable hypothesis for brain imaging. J. Cereb. Blood Flow Metab. 2005; 25: 1394—1399.
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Loaiza A., Porras O., Barros L. Glutamate triggers rapid glucose transport stimulation in astrocytes as evidenced by real!time confocal microscopy. J. Neuroscience 2003; 23 (19): 7337—7342.
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Magistretti P., Pellerin L. Astrocytes couple synaptic activity to glucose uti! lization in the brain. News Physiol. Sci. 1999; 14: 177—182.
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Bergsneider M., Hovda D., Shalmon E. et al. Cerebral hyperglycolysis fol! lowing severe traumatic brain injury in humans: a positron emission tomog! raphy study. J. Neurosurg. 1997; 86: 241—251.
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Kann O., Kova'cs R.Mitochondria and neuronal activity. Am. J. Physiol. Cell Physiol. 2007; 292: 641—657.
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Pellerin L., Magistretti P. Glutamate uptake into astrocytes stimulates aero! bic glycolysis: a mechanism coupling neuronal activity to glucose utiliza! tion. Proc.Natl. Acad. Sci. USA 1994; 91: 10625—10629.
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Parkin M., Hopwood S., Jones D. et al.Dynamic changes in brain glucose and lactate in pericontusional areas of the human cerebral cortex, monitored with rapid sampling on!line microdialysis: relationship with depolarisa! tion!like events. J. Cereb. Blood Flow. Metab. 2005; 25: 402—413.
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Ve s p a P. , M c A r t h u r D . , G l e n n T . e t a l . Persistently reduced levels of extra! cellular glucose early after traumatic brain injury correlate with poor out! come at six months: A microdialysis study. J. Cereb. Blood Flow Metab. 2003; 23: 865—877.
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Ve s p a P. , B e r g s n e i d e r M . , H a t t o r i N . e t a l .Metabolic crisis without brain ischemia is common after traumatic brain injury: a combined microdialysis and positron emission tomography study. J. Cereb. Blood Flow Metab. 2005; 25: 763—774. Поступила 21.10.08
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