Literature DB >> 1885454

Cerebral O2 metabolism and cerebral blood flow in humans during deep and rapid-eye-movement sleep.

P L Madsen1, J F Schmidt, G Wildschiødtz, L Friberg, S Holm, S Vorstrup, N A Lassen.   

Abstract

It could be expected that the various stages of sleep were reflected in variation of the overall level of cerebral activity and thereby in the magnitude of cerebral metabolic rate of oxygen (CMRO2) and cerebral blood flow (CBF). The elusive nature of sleep imposes major methodological restrictions on examination of this question. We have now measured CBF and CMRO2 in young healthy volunteers using the Kety-Schmidt technique with 133Xe as the inert gas. Measurements were performed during wakefulness, deep sleep (stage 3/4), and rapid-eye-movement (REM) sleep as verified by standard polysomnography. Contrary to the only previous study in humans, which reported an insignificant 3% reduction in CMRO2 during sleep, we found a deep-sleep-associated statistically highly significant 25% decrease in CMRO2, a magnitude of depression according with studies of glucose uptake and reaching levels otherwise associated with light anesthesia. During REM sleep (dream sleep) CMRO2 was practically the same as in the awake state. Changes in CBF paralleled changes in CMRO2 during both deep and REM sleep.

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Year:  1991        PMID: 1885454     DOI: 10.1152/jappl.1991.70.6.2597

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  57 in total

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3.  The effect of rapid eye movement (REM) sleep on upper airway mechanics in normal human subjects.

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5.  Regional cerebral blood flow changes as a function of delta and spindle activity during slow wave sleep in humans.

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7.  Relationship between relative cerebral blood flow, relative cerebral blood volume, and relative cerebral metabolic rate of oxygen in the preterm neonatal brain.

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Review 8.  Time-resolved MRI oximetry for quantifying CMRO(2) and vascular reactivity.

Authors:  Felix W Wehrli; Zachary B Rodgers; Varsha Jain; Michael C Langham; Cheng Li; Daniel J Licht; Jeremy Magland
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9.  Reproducibility of the blood flow index as noninvasive, bedside estimation of cerebral blood flow.

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10.  Adenosine inhibition of mesopontine cholinergic neurons: implications for EEG arousal.

Authors:  D G Rainnie; H C Grunze; R W McCarley; R W Greene
Journal:  Science       Date:  1994-02-04       Impact factor: 47.728

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