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  4. Sleep fragmentation alters brain energy metabolism without modifying hippocampal electrophysiological response to novelty exposure
 
research article

Sleep fragmentation alters brain energy metabolism without modifying hippocampal electrophysiological response to novelty exposure

Baud, Maxime O.
•
Parafita, Julia
•
Audrey, Nguyen
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2016
Journal Of Sleep Research

Sleep is viewed as a fundamental restorative function of the brain, but its specific role in neural energy budget remains poorly understood. Sleep deprivation dampens brain energy metabolism and impairs cognitive functions. Intriguingly, sleep fragmentation, despite normal total sleep duration, has a similar cognitive impact, and in this paper we ask the question of whether it may also impair brain energy metabolism. To this end, we used a recently developed mouse model of 2 weeks of sleep fragmentation and measured 2-deoxy-glucose uptake and glycogen, glucose and lactate concentration in different brain regions. In order to homogenize mice behaviour during metabolic measurements, we exposed them to a novel environment for 1 h. Using an intra-hippocampal electrode, we first showed that hippocampal electroencephalograph (EEG) response to exploration was unaltered by 1 or 14 days of sleep fragmentation. However, after 14 days, sleep fragmented mice exhibited a lower uptake of 2-deoxy-glucose in cortex and hippocampus and lower cortical lactate levels than control mice. Our results suggest that long-term sleep fragmentation impaired brain metabolism to a similar extent as total sleep deprivation without affecting the neuronal responsiveness of hippocampus to a novel environment.

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Type
research article
DOI
10.1111/jsr.12419
Web of Science ID

WOS:000388457300013

Author(s)
Baud, Maxime O.
Parafita, Julia
Audrey, Nguyen
Magistretti, Pierre J.  
Petit, Jean-Marie
Date Issued

2016

Publisher

Wiley-Blackwell

Published in
Journal Of Sleep Research
Volume

25

Issue

5

Start page

583

End page

590

Subjects

neurometabolic coupling

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astrocyte-neurone lactate shuttle

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energy metabolism

•

Beta rhythm

•

exploratory behavior

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LNDC  
Available on Infoscience
January 24, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/133772
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