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Neuroscience ; 289: 106-13, 2015 Mar 19.
Article de Anglais | MEDLINE | ID: mdl-25592421

RÉSUMÉ

The present study examines the change in water diffusion properties of the corpus callosum (CC) and the hippocampus, in response to prolonged hypobaric hypoxia (HH) stress, using in vivo magnetic resonance imaging (MRI) modalities such as T2 relaxometry and diffusion tensor imaging (DTI). Three groups of rats (n=7/group) were exposed to a simulated altitude of 6700m above sea level for the duration of 7, 14 and 21days, respectively. Data were acquired pre-exposure, post-exposure and after 1week of normoxic follow-up in each group. The increment in T2 values with no apparent diffusion coefficient (ADC) change in the CC after 7 and 14days of HH exposure indicated mixed (vasogenic and cytotoxic) edema formation. After 1week of normoxia, 7-day HH-exposed rats showed a decrease in ADC values in the CC, probably due to cytotoxic edema. A delayed decrease in ADC values was observed in the hippocampus after 1week normoxic follow-up in 7- and 14-day HH groups giving an insight of cytotoxic edema formation. Interestingly, 21-day HH-exposed rats did not show change in ADC values. The decrease in T2 values after 14 and 21days in the hippocampal region depicts iron deposition, which was confirmed by histopathology. This study successfully demonstrated the use of MRI modality to trace water diffusion changes in the brain due to prolonged HH exposure.


Sujet(s)
Corps calleux/anatomopathologie , Hippocampe/anatomopathologie , Hypoxie/anatomopathologie , Mal de l'altitude , Animaux , Oedème cérébral/métabolisme , Oedème cérébral/anatomopathologie , Corps calleux/métabolisme , Imagerie par tenseur de diffusion , Hexacyanoferrates II , Hippocampe/métabolisme , Hypoxie/métabolisme , Fer/métabolisme , Imagerie par résonance magnétique/instrumentation , Imagerie par résonance magnétique/méthodes , Mâle , Photomicrographie , Pression , Rat Sprague-Dawley
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