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Author Spotlight: Noninvasive Cerebral Blood Flow Determination in Human Functional Brain Region for Diagnosis of Neurological Disorders
Published on: May 31, 2024
Impact of Head-Down Position on Cerebral Blood Flow in Healthy Subjects: An Arterial Spin-Labeling MR Perfusion Study
Mehdi Mejdoubi1, Aude Pavilla1, Sylvie Colombani1
1Department of Neuroradiology, Pierre-Zobda-Quitman Hospital, University Hospital of Martinique, French West Indies, France.
Background:
A head-down (HD) position is used in some stroke centers to maintain cerebral perfusion (CP) in stroke patients.
Purpose:
To assess CP in healthy volunteers in the supine and HD (-15°) positions.
Study Type:
Prospective.
Population:
Eighteen healthy subjects of 53 (±8) years old.
Field Strength/Sequence:
1.5T / arterial spin-labeling (ASL) in the supine position and after 4 minutes of HD position.
Assessment:
Regions of interest from reconstructed cerebral blood-flow (CBF) maps: subcortical nuclear gray matter (accumbens, amygdala, caudate, hippocampus, pallidum, putamen, thalamus), cortical gray matter (cGM), and white matter (WM). We also monitored hemodynamic parameters.
Statistical Tests:
Shapiro-Wilk test, analysis of variance (ANOVA) tests, Student's t-tests, and Pearson correlation analysis.
Results:
CBF was higher in women compared to men, whatever the position (mean difference of 17% in supine, and 13% in HD position). From supine to HD position, CBF was decreased in all regions (mean decrease of -7%). Simultaneously, mean arterial pressure and systolic blood pressure increased (respectively P = 0.004 and P < 0.001).
Data Conclusion:
The CBF decrease, despite increased hemodynamic parameters, may indicate efficient cerebral autoregulation. Our results seem to reflect only early cerebral autoregulation stages but may open the way towards a more precise understanding of CP.
Level Of Evidence:
1 Technical Efficacy Stage: 2 J. Magn. Reson. Imaging 2020;51:218-224.
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