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Research ArticleNeurointervention
Open Access

Quantifying Intracranial Aneurysm Wall Permeability for Risk Assessment Using Dynamic Contrast-Enhanced MRI: A Pilot Study

P. Vakil, S.A. Ansari, C.G. Cantrell, C.S. Eddleman, F.H. Dehkordi, J. Vranic, M.C. Hurley, H.H. Batjer, B.R. Bendok and T.J. Carroll
American Journal of Neuroradiology May 2015, 36 (5) 953-959; DOI: https://doi.org/10.3174/ajnr.A4225
P. Vakil
aFrom the Departments of Radiology (P.V., S.A.A., J.V., M.C.H., T.J.C.)
cBiomedical Engineering (P.V., C.G.C., T.J.C.), Northwestern University, Chicago, Illinois
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S.A. Ansari
aFrom the Departments of Radiology (P.V., S.A.A., J.V., M.C.H., T.J.C.)
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C.G. Cantrell
cBiomedical Engineering (P.V., C.G.C., T.J.C.), Northwestern University, Chicago, Illinois
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C.S. Eddleman
dDepartment of Neurological Surgery (C.S.E., H.H.B.), University of Texas-Southwestern, Dallas, Texas
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F.H. Dehkordi
eDepartment of Economics and Decision Sciences (F.H.D.), Western Illinois University, Macomb, Illinois.
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J. Vranic
aFrom the Departments of Radiology (P.V., S.A.A., J.V., M.C.H., T.J.C.)
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M.C. Hurley
aFrom the Departments of Radiology (P.V., S.A.A., J.V., M.C.H., T.J.C.)
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H.H. Batjer
dDepartment of Neurological Surgery (C.S.E., H.H.B.), University of Texas-Southwestern, Dallas, Texas
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B.R. Bendok
bNeurosurgery (B.R.B.)
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T.J. Carroll
aFrom the Departments of Radiology (P.V., S.A.A., J.V., M.C.H., T.J.C.)
cBiomedical Engineering (P.V., C.G.C., T.J.C.), Northwestern University, Chicago, Illinois
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Abstract

BACKGROUND AND PURPOSE: Pathological changes in the intracranial aneurysm wall may lead to increases in its permeability; however the clinical significance of such changes has not been explored. The purpose of this pilot study was to quantify intracranial aneurysm wall permeability (Ktrans, VL) to contrast agent as a measure of aneurysm rupture risk and compare these parameters against other established measures of rupture risk. We hypothesized Ktrans would be associated with intracranial aneurysm rupture risk as defined by various anatomic, imaging, and clinical risk factors.

MATERIALS AND METHODS: Twenty-seven unruptured intracranial aneurysms in 23 patients were imaged with dynamic contrast-enhanced MR imaging, and wall permeability parameters (Ktrans, VL) were measured in regions adjacent to the aneurysm wall and along the paired control MCA by 2 blinded observers. Ktrans and VL were evaluated as markers of rupture risk by comparing them against established clinical (symptomatic lesions) and anatomic (size, location, morphology, multiplicity) risk metrics.

RESULTS: Interobserver agreement was strong as shown in regression analysis (R2 > 0.84) and intraclass correlation (intraclass correlation coefficient >0.92), indicating that the Ktrans can be reliably assessed clinically. All intracranial aneurysms had a pronounced increase in wall permeability compared with the paired healthy MCA (P < .001). Regression analysis demonstrated a significant trend toward an increased Ktrans with increasing aneurysm size (P < .001). Logistic regression showed that Ktrans also predicted risk in anatomic (P = .02) and combined anatomic/clinical (P = .03) groups independent of size.

CONCLUSIONS: We report the first evidence of dynamic contrast-enhanced MR imaging–modeled contrast permeability in intracranial aneurysms. We found that contrast agent permeability across the aneurysm wall correlated significantly with both aneurysm size and size-independent anatomic risk factors. In addition, Ktrans was a significant and size-independent predictor of morphologically and clinically defined high-risk aneurysms.

ABBREVIATIONS:

DCE
dynamic contrast-enhanced
IA
intracranial aneurysm
ISUIA
International Study of Unruptured Intracranial Aneurysms
Ktrans
contrast-transfer coefficient
VL
fractional volume of extravascular extracellular space per unit tissue
  • © 2015 by American Journal of Neuroradiology

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American Journal of Neuroradiology: 36 (5)
American Journal of Neuroradiology
Vol. 36, Issue 5
1 May 2015
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Cite this article
P. Vakil, S.A. Ansari, C.G. Cantrell, C.S. Eddleman, F.H. Dehkordi, J. Vranic, M.C. Hurley, H.H. Batjer, B.R. Bendok, T.J. Carroll
Quantifying Intracranial Aneurysm Wall Permeability for Risk Assessment Using Dynamic Contrast-Enhanced MRI: A Pilot Study
American Journal of Neuroradiology May 2015, 36 (5) 953-959; DOI: 10.3174/ajnr.A4225

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Quantifying Intracranial Aneurysm Wall Permeability for Risk Assessment Using Dynamic Contrast-Enhanced MRI: A Pilot Study
P. Vakil, S.A. Ansari, C.G. Cantrell, C.S. Eddleman, F.H. Dehkordi, J. Vranic, M.C. Hurley, H.H. Batjer, B.R. Bendok, T.J. Carroll
American Journal of Neuroradiology May 2015, 36 (5) 953-959; DOI: 10.3174/ajnr.A4225
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