Literature DB >> 15789033

Cerebral blood flow and brain oxygenation in rats breathing oxygen under pressure.

Ivan T Demchenko1, Yuriy I Luchakov, Alexander N Moskvin, Diana R Gutsaeva, Barry W Allen, Edward D Thalmann, Claude A Piantadosi.   

Abstract

Hyperbaric oxygen (HBO(2)) increases oxygen tension (PO(2)) in blood but reduces blood flow by means of O(2)-induced vasoconstriction. Here we report the first quantitative evaluation of these opposing effects on tissue PO(2) in brain, using anesthetized rats exposed to HBO(2) at 2 to 6 atmospheres absolute (ATA). We assessed the contribution of regional cerebral blood flow (rCBF) to brain PO(2) as inspired PO(2) (PiO(2)) exceeds 1 ATA. We measured rCBF and local PO(2) simultaneously in striatum using collocated platinum electrodes. Cerebral blood flow was computed from H(2) clearance curves in vivo and PO(2) from electrodes calibrated in vitro, before and after insertion. Arterial PCO(2) was controlled, and body temperature, blood pressure, and EEG were monitored. Scatter plots of rCBF versus PO(2) were nonlinear (R(2)=0.75) for rats breathing room air but nearly linear (R(2)=0.88-0.91) for O(2) at 2 to 6 ATA. The contribution of rCBF to brain PO(2) was estimated at constant inspired PO(2), by increasing rCBF with acetazolamide (AZA) or decreasing it with N-nitro-L-arginine methyl ester (L-NAME). At basal rCBF (78 mL/100 g min), local PO(2) increased 7- to 33-fold at 2 to 6 ATA, compared with room air. A doubling of rCBF increased striatal PO(2) not quite two-fold in rats breathing room air but 13- to 64-fold in those breathing HBO(2) at 2 to 6 ATA. These findings support our hypothesis that HBO(2) increases PO(2) in brain in direct proportion to rCBF.

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Year:  2005        PMID: 15789033     DOI: 10.1038/sj.jcbfm.9600110

Source DB:  PubMed          Journal:  J Cereb Blood Flow Metab        ISSN: 0271-678X            Impact factor:   6.200


  18 in total

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2.  The oxygen paradox of neurovascular coupling.

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3.  Optical coherence tomography for the quantitative study of cerebrovascular physiology.

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Review 4.  Role of endothelial nitric oxide in cerebrovascular regulation.

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5.  Oxygen-sensitive outcomes and gene expression in acute ischemic stroke.

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6.  MRI of cerebral blood flow under hyperbaric conditions in rats.

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7.  Neurovascular coupling in rat brain operates independent of hemoglobin deoxygenation.

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Journal:  J Cereb Blood Flow Metab       Date:  2009-12-30       Impact factor: 6.200

8.  Involvement of extracellular superoxide dismutase in regulating brain blood flow.

Authors:  I T Demchenko; D R Gutsaeva; A N Moskvin; S Yu Zhilyaev
Journal:  Neurosci Behav Physiol       Date:  2009-12-22

9.  Obesity-induced cognitive impairment in older adults: a microvascular perspective.

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10.  Hyperbaric oxygen and hyperbaric air treatment result in comparable neuronal death reduction and improved behavioral outcome after transient forebrain ischemia in the gerbil.

Authors:  Michal Malek; Malgorzata Duszczyk; Marcin Zyszkowski; Apolonia Ziembowicz; Elzbieta Salinska
Journal:  Exp Brain Res       Date:  2012-10-02       Impact factor: 1.972

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