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Sodium-23 magnetic resonance imaging has potential for improving penumbra detection but not for estimating stroke onset time
Authors:Friedrich Wetterling  Lindsay Gallagher  Jim Mullin  William M Holmes  Chris McCabe  I Mhairi Macrae  Andrew J Fagan
Affiliation:1.Department of Psychiatry, School of Medicine, Trinity College, The University of Dublin, College Green, Dublin, Ireland;2.Glasgow Experimental MRI Centre, Institute of Neuroscience and Psychology, College of Medicine, Veterinary and Life Sciences, University of Glasgow, Glasgow, UK;3.Centre for Advanced Medical Imaging, St James''s Hospital/Trinity College Dublin, Dublin, Ireland
Abstract:Tissue sodium concentration increases in irreversibly damaged (core) tissue following ischemic stroke and can potentially help to differentiate the core from the adjacent hypoperfused but viable penumbra. To test this, multinuclear hydrogen-1/sodium-23 magnetic resonance imaging (MRI) was used to measure the changing sodium signal and hydrogen-apparent diffusion coefficient (ADC) in the ischemic core and penumbra after rat middle cerebral artery occlusion (MCAO). Penumbra and core were defined from perfusion imaging and histologically defined irreversibly damaged tissue. The sodium signal in the core increased linearly with time, whereas the ADC rapidly decreased by >30% within 20 minutes of stroke onset, with very little change thereafter (0.5–6 hours after MCAO). Previous reports suggest that the time point at which tissue sodium signal starts to rise above normal (onset of elevated tissue sodium, OETS) represents stroke onset time (SOT). However, extrapolating core data back in time resulted in a delay of 72±24 minutes in OETS compared with actual SOT. At the OETS in the core, penumbra sodium signal was significantly decreased (88±6%, P=0.0008), whereas penumbra ADC was not significantly different (92±18%, P=0.2) from contralateral tissue. In conclusion, reduced sodium-MRI signal may serve as a viability marker for penumbra detection and can complement hydrogen ADC and perfusion MRI in the time-independent assessment of tissue fate in acute stroke patients.
Keywords:apparent diffusion coefficient   middle cerebral artery occlusion   onset of elevated tissue sodium   penumbra   sodium MRI
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