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Research ArticlePediatric Neuroimaging

Comparison of CBF Measured with Combined Velocity-Selective Arterial Spin-Labeling and Pulsed Arterial Spin-Labeling to Blood Flow Patterns Assessed by Conventional Angiography in Pediatric Moyamoya

D.S. Bolar, B. Gagoski, D.B. Orbach, E. Smith, E. Adalsteinsson, B.R. Rosen, P.E. Grant and R.L. Robertson
American Journal of Neuroradiology November 2019, DOI: https://doi.org/10.3174/ajnr.A6262
D.S. Bolar
aFrom the Department of Radiology (D.S.B.)
bCenter for Functional Magnetic Resonance Imaging (D.S.B.), UC San Diego, La Jolla, California
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B. Gagoski
cFetal Neonatal Neuroimaging and Developmental Science Center (B.G., P.E.G.)
dDepartment of Radiology (B.G., D.B.O., P.E.G., R.L.R.)
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D.B. Orbach
dDepartment of Radiology (B.G., D.B.O., P.E.G., R.L.R.)
eDivision of Neurointerventional Radiology (D.B.O.)
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E. Smith
fDepartment of Neurosurgery (E.S.)
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E. Adalsteinsson
hDepartment of Electrical Engineering & Computer Science (E.A.), Massachusetts Institute of Technology, Cambridge, Massachusetts
iMGH/HST Athinoula A. Martinos Center for Biomedical Imaging (E.A., B.R.R.), Charlestown, Massachusetts.
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B.R. Rosen
iMGH/HST Athinoula A. Martinos Center for Biomedical Imaging (E.A., B.R.R.), Charlestown, Massachusetts.
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P.E. Grant
cFetal Neonatal Neuroimaging and Developmental Science Center (B.G., P.E.G.)
dDepartment of Radiology (B.G., D.B.O., P.E.G., R.L.R.)
gDivision of Newborn Medicine (P.E.G.), Department of Medicine, Boston Children's Hospital, Boston, Massachusetts
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R.L. Robertson
dDepartment of Radiology (B.G., D.B.O., P.E.G., R.L.R.)
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Abstract

BACKGROUND AND PURPOSE: Imaging CBF is important for managing pediatric moyamoya. Traditional arterial spin-labeling MR imaging detects delayed transit thorough diseased arteries but is inaccurate for measuring perfusion because of these delays. Velocity-selective arterial spin-labeling is insensitive to transit delay and well-suited for imaging Moyamoya perfusion. This study assesses the accuracy of a combined velocity-selective arterial spin-labeling and traditional pulsed arterial spin-labeling CBF approach in pediatric moyamoya, with comparison to blood flow patterns on conventional angiography.

MATERIALS AND METHODS: Twenty-two neurologically stable pediatric patients with moyamoya and 5 asymptomatic siblings without frank moyamoya were imaged with velocity-selective arterial spin-labeling, pulsed arterial spin-labeling, and DSA (patients). Qualitative comparison was performed, followed by a systematic comparison using ASPECTS-based scoring. Quantitative pulsed arterial spin-labeling CBF and velocity-selective arterial spin-labeling CBF for the middle cerebral artery, anterior cerebral artery, and posterior cerebral artery territories were also compared.

RESULTS: Qualitatively, velocity-selective arterial spin-labeling perfusion maps reflect the DSA parenchymal phase, regardless of postinjection timing. Conversely, pulsed arterial spin-labeling maps reflect the DSA appearance at postinjection times closer to the arterial spin-labeling postlabeling delay, regardless of vascular phase. ASPECTS comparison showed excellent agreement (88%, κ = 0.77, P < .001) between arterial spin-labeling and DSA, suggesting velocity-selective arterial spin-labeling and pulsed arterial spin-labeling capture key perfusion and transit delay information, respectively. CBF coefficient of variation, a marker of perfusion variability, was similar for velocity-selective arterial spin-labeling in patient regions of delayed-but-preserved perfusion compared to healthy asymptomatic sibling regions (coefficient of variation = 0.30 versus 0.26, respectively, Δcoefficient of variation = 0.04), but it was significantly different for pulsed arterial spin-labeling (coefficient of variation = 0.64 versus 0.34, Δcoefficient of variation = 0.30, P < .001).

CONCLUSIONS: Velocity-selective arterial spin-labeling offers a powerful approach to image perfusion in pediatric moyamoya due to transit delay insensitivity. Coupled with pulsed arterial spin-labeling for transit delay information, a volumetric MR imaging approach capturing key DSA information is introduced.

ABBREVIATIONS:

ACA
anterior cerebral artery
ASL
arterial spin-labeling
CV
coefficient of variation
PASL
pulsed arterial spin-labeling
PCA
posterior cerebral artery
pCASL
pseudocontinuous arterial spin-labeling
PLD
postlabeling delay
VSASL
velocity-selective arterial spin-labeling

Footnotes

  • Disclosures: Divya S. Bolar—UNRELATED: Employment: Massachusetts General Hospital, Comments: I was a resident, then fellow, in the Radiology Department at Massachusetts General Hospital from 2013 to 2018 and was paid as such; Grants/Grants Pending: Radiological Society of North America Resident Grant, Comments: I received a Radiological Society of North America Resident Grant in 2016; these funds were used for other related projects and not directly for this project (which started before I received the grant). Elfar Adalsteinsson— UNRELATED: Grants/Grants Pending: National Institutes of Health, Comments: National Institutes of Health 1U01HD087211-01 and 5R01EB017337-02, National Institutes of Health applications under review*; Royalties: Stanford Licensing Office, Comments: patents on MRI methods issued by Stanford University. Borjan Gagoski—UNRELATED: Grants/Grants Pending: National Institutes of Health 1U01HD087211-01 and 5R01EB017337-02.* Bruce R. Rosen—UNRELATED: Grants/Grants Pending: National Institutes of Health P41-EB015896.* P. Ellen Grant—UNRELATED: Grants/Grants Pending: National Institutes of Health 1U01HD087211-01 and 5R01EB017337-02.* *Money paid to the institution.

  • Paper previously presented, in part, at: Annual Meeting of the International Society for Magnetic Resonance in Medicine, May 30 to June 5, 2015; Toronto, Ontario, Canada; and Annual Meeting of the Radiological Society of North America, November 29 to December 4, 2015; Chicago, Illinois.

  • © 2019 by American Journal of Neuroradiology
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D.S. Bolar, B. Gagoski, D.B. Orbach, E. Smith, E. Adalsteinsson, B.R. Rosen, P.E. Grant, R.L. Robertson
Comparison of CBF Measured with Combined Velocity-Selective Arterial Spin-Labeling and Pulsed Arterial Spin-Labeling to Blood Flow Patterns Assessed by Conventional Angiography in Pediatric Moyamoya
American Journal of Neuroradiology Nov 2019, DOI: 10.3174/ajnr.A6262

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Comparison of CBF Measured with Combined Velocity-Selective Arterial Spin-Labeling and Pulsed Arterial Spin-Labeling to Blood Flow Patterns Assessed by Conventional Angiography in Pediatric Moyamoya
D.S. Bolar, B. Gagoski, D.B. Orbach, E. Smith, E. Adalsteinsson, B.R. Rosen, P.E. Grant, R.L. Robertson
American Journal of Neuroradiology Nov 2019, DOI: 10.3174/ajnr.A6262
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