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Research ArticleBrain

Quantitative Assessment of External Carotid Artery Territory Supply with Modified Vessel-Encoded Arterial Spin-Labeling

Y. Dang, B. Wu, Y. Sun, D. Mo, X. Wang, J. Zhang and J. Fang
American Journal of Neuroradiology August 2012, 33 (7) 1380-1386; DOI: https://doi.org/10.3174/ajnr.A2978
Y. Dang
aFrom the Academy for Advanced Interdisciplinary Studies (Y.D., X.W., J.Z., J.F.)
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B. Wu
cDepartments of Radiology (B.W., X.W.)
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Y. Sun
bCollege of Engineering (Y.S., J.Z., J.F.), Peking University, Beijing, China
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D. Mo
dNeurosurgery (D.M.), Peking University First Hospital, Beijing, China.
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X. Wang
aFrom the Academy for Advanced Interdisciplinary Studies (Y.D., X.W., J.Z., J.F.)
cDepartments of Radiology (B.W., X.W.)
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J. Zhang
aFrom the Academy for Advanced Interdisciplinary Studies (Y.D., X.W., J.Z., J.F.)
bCollege of Engineering (Y.S., J.Z., J.F.), Peking University, Beijing, China
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J. Fang
aFrom the Academy for Advanced Interdisciplinary Studies (Y.D., X.W., J.Z., J.F.)
bCollege of Engineering (Y.S., J.Z., J.F.), Peking University, Beijing, China
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Abstract

BACKGROUND AND PURPOSE: In patients with carotid stenosis or occlusion, cerebral blood could be supplied through collateral pathways to improve regional blood flow and protect against ischemic events. The contribution of collaterals from the ICA can be assessed by depiction of vascular perfusion territories with ASL. However, so far there is no method available to evaluate the collateral perfusion territory from the ECA in MR imaging. In this study, we present a new labeling scheme based on VE-ASL to quantitatively assess the perfusion territory of the ECA.

MATERIALS AND METHODS: A new labeling approach with a Hadamard encoding scheme was developed to label major arteries, especially the ECA. Twelve healthy subjects with normal cerebrovascular anatomy were examined to demonstrate their perfusion territories. Eight patients with carotid artery stenosis or occlusion were assessed before and after surgery to show changes of their collateral blood supply.

RESULTS: The proposed method enables assessment of the perfusion territories of the ECA. Good agreement was found between the vascular territories and normal cerebrovascular anatomy in healthy subjects. For the patients with carotid stenosis or occlusion, our noninvasive results provided information on collateral flow comparable with that from DSA. Their collateral flows from the ECA, moreover, could be quantitatively estimated pre- and postoperatively.

CONCLUSIONS: The modified approach has been validated by the consistency of collateral perfusion territories with cerebrovascular anatomy, and quantitative assessment of collaterals proved useful for assisting in evaluating therapeutic interventions.

ABBREVIATIONS:

ACA
anterior cerebral artery
ASL
arterial spin-labeling
DSC
dynamic susceptibility contrast
ECA
external carotid artery
ECIC
extracranial–intracranial
Gxy
additional gradient pulse
PCASL
pseudocontinuous arterial spin-labeling
TCD
transcranial Doppler sonography
VA
vertebral artery
VE
vessel-encoded
  • © 2012 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 33 (7)
American Journal of Neuroradiology
Vol. 33, Issue 7
1 Aug 2012
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Cite this article
Y. Dang, B. Wu, Y. Sun, D. Mo, X. Wang, J. Zhang, J. Fang
Quantitative Assessment of External Carotid Artery Territory Supply with Modified Vessel-Encoded Arterial Spin-Labeling
American Journal of Neuroradiology Aug 2012, 33 (7) 1380-1386; DOI: 10.3174/ajnr.A2978

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Quantitative Assessment of External Carotid Artery Territory Supply with Modified Vessel-Encoded Arterial Spin-Labeling
Y. Dang, B. Wu, Y. Sun, D. Mo, X. Wang, J. Zhang, J. Fang
American Journal of Neuroradiology Aug 2012, 33 (7) 1380-1386; DOI: 10.3174/ajnr.A2978
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