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Research ArticleBrain
Open Access

Measuring Pulsatile Flow in Cerebral Arteries Using 4D Phase-Contrast MR Imaging

A. Wåhlin, K. Ambarki, R. Birgander, O. Wieben, K.M. Johnson, J. Malm and A. Eklund
American Journal of Neuroradiology September 2013, 34 (9) 1740-1745; DOI: https://doi.org/10.3174/ajnr.A3442
A. Wåhlin
aFrom the Department of Radiation Sciences (A.W., K.A., R.B., A.E.)
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K. Ambarki
aFrom the Department of Radiation Sciences (A.W., K.A., R.B., A.E.)
bCenter for Biomedical Engineering and Physics (K.A., A.E.)
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R. Birgander
aFrom the Department of Radiation Sciences (A.W., K.A., R.B., A.E.)
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O. Wieben
dDepartment of Medical Physics (O.W., K.M.J.)
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K.M. Johnson
dDepartment of Medical Physics (O.W., K.M.J.)
eDepartment of Biomedical Engineering (K.M.J.), University of Wisconsin, Madison, Wisconsin.
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J. Malm
cDepartment of Clinical Neuroscience (J.M.), Umeå University, Umeå, Sweden
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A. Eklund
aFrom the Department of Radiation Sciences (A.W., K.A., R.B., A.E.)
bCenter for Biomedical Engineering and Physics (K.A., A.E.)
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Abstract

BACKGROUND AND PURPOSE: 4D PCMRI can be used to quantify pulsatile hemodynamics in multiple cerebral arteries. The aim of this study was to compare 4D PCMRI and 2D PCMRI for assessments of pulsatile hemodynamics in major cerebral arteries.

MATERIALS AND METHODS: We scanned the internal carotid artery, the anterior cerebral artery, the basilar artery, and the middle cerebral artery in 10 subjects with a single 4D and multiple 2D PCMRI acquisitions by use of a 3T system and a 32-channel head coil. We assessed the agreement regarding net flow and the volume of arterial pulsatility (ΔV) for all vessels.

RESULTS: 2D and 4D PCMRI produced highly correlated results, with r = 0.86 and r = 0.95 for ΔV and net flow, respectively (n = 69 vessels). These values increased to r = 0.93 and r = 0.97, respectively, during investigation of a subset of measurements with <5% variation in heart rate between the 4D and 2D acquisition (n = 31 vessels). Significant differences were found for ICA and MCA net flow (P = .004 and P < .001, respectively) and MCA ΔV (P = .006). However, these differences were attenuated and no longer significant when the subset with stable heart rate (n = 31 vessels) was analyzed.

CONCLUSIONS: 4D PCMRI provides a powerful methodology to measure pulsatility of the larger cerebral arteries from a single acquisition. A large part of differences between measurements was attributed to physiologic variations. The results were consistent with 2D PCMRI.

ABBREVATIONS:

PCMRI
phase-contrast MR imaging
ACA
anterior cerebral artery
ΔV
volume of arterial pulsatility
PC-VIPR
phase contrast with vastly undersampled isotropic projection reconstruction
ΔHR
change in heart rate
  • © 2013 by American Journal of Neuroradiology

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American Journal of Neuroradiology: 34 (9)
American Journal of Neuroradiology
Vol. 34, Issue 9
1 Sep 2013
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Cite this article
A. Wåhlin, K. Ambarki, R. Birgander, O. Wieben, K.M. Johnson, J. Malm, A. Eklund
Measuring Pulsatile Flow in Cerebral Arteries Using 4D Phase-Contrast MR Imaging
American Journal of Neuroradiology Sep 2013, 34 (9) 1740-1745; DOI: 10.3174/ajnr.A3442

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Measuring Pulsatile Flow in Cerebral Arteries Using 4D Phase-Contrast MR Imaging
A. Wåhlin, K. Ambarki, R. Birgander, O. Wieben, K.M. Johnson, J. Malm, A. Eklund
American Journal of Neuroradiology Sep 2013, 34 (9) 1740-1745; DOI: 10.3174/ajnr.A3442
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