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Improved Turnaround Times | Median time to first decision: 12 days

Research ArticleBrain

Arteriovenous Shunt Visualization in Arteriovenous Malformations with Arterial Spin-Labeling MR Imaging

R.L. Wolf, J. Wang, J.A. Detre, E.L. Zager and R.W. Hurst
American Journal of Neuroradiology April 2008, 29 (4) 681-687; DOI: https://doi.org/10.3174/ajnr.A0901
R.L. Wolf
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J. Wang
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J.A. Detre
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E.L. Zager
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R.W. Hurst
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Abstract

BACKGROUND AND PURPOSE: A reliable quantitative technique for measuring arteriovenous (AV) shunt in vascular malformations is not currently available. Here, we evaluated the hypothesis that continuous arterial spin-labeled (CASL) perfusion MR imaging can be used to detect and measure AV shunt in patients with arteriovenous malformations (AVMs).

MATERIALS AND METHODS: CASL perfusion MR imaging was performed in 7 patients with AVMs. Semiquantitative AV shunt estimates were generated based on a thresholding strategy by using signal-intensity difference (ΔM) images to avoid potential errors in cerebral blood flow (CBF) calculation related to abnormal transit times and nonphysiologic blood-tissue water exchange in and around the AVMs. The potential for measuring CBF in regions distant from and near the AVM was explored, as was the relationship of CBF changes related to the size of the shunt.

RESULTS: In all 7 cases, striking increased intensity was seen on CASL perfusion ΔM maps in the nidus and venous structures draining the AVM. Shunt estimates ranged from 30% to 0.6%. Mean CBF measurements in structures near the AVMs were not significantly different from the contralateral measurements. However, CBF in adjacent ipsilateral white matter increased relative to the contralateral side as the percent shunt increased (P = .02). Cortical gray matter CBF Δ (contralateral-ipsilateral) values demonstrated the same effect, but the correlation was weak and not significant. Thalamic CBF decreased ipsilaterally with increasing percent AV shunt (P = .01), indicating a possible steal effect. Basal ganglia Δ values showed little change in CBF with the size of the AV shunt.

CONCLUSION: CASL perfusion MR imaging can demonstrate AV shunting, providing high lesion conspicuity and a novel means for evaluating AVM physiology.

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American Journal of Neuroradiology: 29 (4)
American Journal of Neuroradiology
Vol. 29, Issue 4
April 2008
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R.L. Wolf, J. Wang, J.A. Detre, E.L. Zager, R.W. Hurst
Arteriovenous Shunt Visualization in Arteriovenous Malformations with Arterial Spin-Labeling MR Imaging
American Journal of Neuroradiology Apr 2008, 29 (4) 681-687; DOI: 10.3174/ajnr.A0901

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Arteriovenous Shunt Visualization in Arteriovenous Malformations with Arterial Spin-Labeling MR Imaging
R.L. Wolf, J. Wang, J.A. Detre, E.L. Zager, R.W. Hurst
American Journal of Neuroradiology Apr 2008, 29 (4) 681-687; DOI: 10.3174/ajnr.A0901
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Cited By...

  • Noninvasive Follow-up Imaging of Ruptured Pediatric Brain AVMs Using Arterial Spin-Labeling
  • Follow-Up MRI for Small Brain AVMs Treated by Radiosurgery: Is Gadolinium Really Necessary?
  • Arterial Spin-Labeling Improves Detection of Intracranial Dural Arteriovenous Fistulas with MRI
  • Feasibility of Flat Panel Detector CT in Perfusion Assessment of Brain Arteriovenous Malformations: Initial Clinical Experience
  • Intracranial Arteriovenous Shunting: Detection with Arterial Spin-Labeling and Susceptibility-Weighted Imaging Combined
  • Evaluation of 4D Vascular Flow and Tissue Perfusion in Cerebral Arteriovenous Malformations: Influence of Spetzler-Martin Grade, Clinical Presentation, and AVM Risk Factors
  • Accuracy of Vessel-Encoded Pseudocontinuous Arterial Spin-Labeling in Identification of Feeding Arteries in Patients with Intracranial Arteriovenous Malformations
  • Identification of Venous Signal on Arterial Spin Labeling Improves Diagnosis of Dural Arteriovenous Fistulas and Small Arteriovenous Malformations
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More in this TOC Section

  • White Matter Alterations in the Brains of Patients with Active, Remitted, and Cured Cushing Syndrome: A DTI Study
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  • Fast Contrast-Enhanced 4D MRA and 4D Flow MRI Using Constrained Reconstruction (HYPRFlow): Potential Applications for Brain Arteriovenous Malformations
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