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AJNR Awards, New Junior Editors, and more. Read the latest AJNR updates

Research ArticleAdult Brain
Open Access

Discrimination between Glioblastoma and Solitary Brain Metastasis: Comparison of Inflow-Based Vascular-Space-Occupancy and Dynamic Susceptibility Contrast MR Imaging

X. Li, D. Wang, S. Liao, L. Guo, X. Xiao, X. Liu, Y. Xu, J. Hua, J.J. Pillai and Y. Wu
American Journal of Neuroradiology April 2020, 41 (4) 583-590; DOI: https://doi.org/10.3174/ajnr.A6466
X. Li
aFrom the Department of Medical Imaging (X. Li, S.L., L.G., X.X., X. Liu, Y.X., Y.W.), Nanfang Hospital, Southern Medical University, Guangzhou, P.R. China
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D. Wang
bSchool of Biomedical Engineering (D.W.), Shanghai Jiao Tong University, Shanghai, P.R. China
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S. Liao
aFrom the Department of Medical Imaging (X. Li, S.L., L.G., X.X., X. Liu, Y.X., Y.W.), Nanfang Hospital, Southern Medical University, Guangzhou, P.R. China
cDivision of CT and MR, Radiology Department (S.L.), First Affiliated Hospital of Gannan Medical University, Ganzhou, P.R. China
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L. Guo
aFrom the Department of Medical Imaging (X. Li, S.L., L.G., X.X., X. Liu, Y.X., Y.W.), Nanfang Hospital, Southern Medical University, Guangzhou, P.R. China
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X. Xiao
aFrom the Department of Medical Imaging (X. Li, S.L., L.G., X.X., X. Liu, Y.X., Y.W.), Nanfang Hospital, Southern Medical University, Guangzhou, P.R. China
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X. Liu
aFrom the Department of Medical Imaging (X. Li, S.L., L.G., X.X., X. Liu, Y.X., Y.W.), Nanfang Hospital, Southern Medical University, Guangzhou, P.R. China
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Y. Xu
aFrom the Department of Medical Imaging (X. Li, S.L., L.G., X.X., X. Liu, Y.X., Y.W.), Nanfang Hospital, Southern Medical University, Guangzhou, P.R. China
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J. Hua
dNeurosection, Division of MR Research (J.H.)
gF.M. Kirby Research Center for Functional Brain Imaging (J.H.), Kennedy Krieger Institute, Baltimore, Maryland.
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J.J. Pillai
eDivision of Neuroradiology (J.P.); Russell H. Morgan Department of Radiology and Radiological Science and
fDepartment of Neurosurgery (J.P.), Johns Hopkins University School of Medicine, Baltimore, Maryland
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Y. Wu
aFrom the Department of Medical Imaging (X. Li, S.L., L.G., X.X., X. Liu, Y.X., Y.W.), Nanfang Hospital, Southern Medical University, Guangzhou, P.R. China
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Abstract

BACKGROUND AND PURPOSE: Accurate differentiation between glioblastoma and solitary brain metastasis is of vital importance clinically. This study aimed to investigate the potential value of the inflow-based vascular-space-occupancy MR imaging technique, which has no need for an exogenous contrast agent, in differentiating glioblastoma and solitary brain metastasis and to compare it with DSC MR imaging.

MATERIALS AND METHODS: Twenty patients with glioblastoma and 22 patients with solitary brain metastasis underwent inflow-based vascular-space-occupancy and DSC MR imaging with a 3T clinical scanner. Two neuroradiologists independently measured the maximum inflow-based vascular-space-occupancy–derived arteriolar CBV and DSC-derived CBV values in intratumoral regions and peritumoral T2-hyperintense regions, which were normalized to the contralateral white matter (relative arteriolar CBV and relative CBV, inflow-based vascular-space-occupancy relative arteriolar CBV, and DSC-relative CBV). The intraclass correlation coefficient, Student t test, or Mann-Whitney U test and receiver operating characteristic analysis were performed.

RESULTS: All parameters of both regions had good or excellent interobserver reliability (0.74∼0.89). In peritumoral T2-hyperintese regions, DSC-relative CBV (P < .001), inflow-based vascular-space-occupancy arteriolar CBV (P = .001), and relative arteriolar CBV (P = .005) were significantly higher in glioblastoma than in solitary brain metastasis, with areas under the curve of 0.94, 0.83, and 0.72 for discrimination, respectively. In the intratumoral region, both inflow-based vascular-space-occupancy arteriolar CBV and relative arteriolar CBV were significantly higher in glioblastoma than in solitary brain metastasis (both P < .001), with areas under the curve of 0.91 and 0.90, respectively. Intratumoral DSC-relative CBV showed no significant difference (P = .616) between the 2 groups.

CONCLUSIONS: Inflow-based vascular-space-occupancy has the potential to discriminate glioblastoma from solitary brain metastasis, especially in the intratumoral region.

ABBREVIATIONS:

AUC
area under the curve
CBVa
arteriolar CBV
GBM
glioblastoma
iVASO
inflow-based vascular-space-occupancy
rCBV
relative CBV
rCBVa
relative arteriolar CBV
PTH
peritumoral T2-hyperintesity region
SBM
solitary brain metastasis
  • © 2020 by American Journal of Neuroradiology

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American Journal of Neuroradiology: 41 (4)
American Journal of Neuroradiology
Vol. 41, Issue 4
1 Apr 2020
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Cite this article
X. Li, D. Wang, S. Liao, L. Guo, X. Xiao, X. Liu, Y. Xu, J. Hua, J.J. Pillai, Y. Wu
Discrimination between Glioblastoma and Solitary Brain Metastasis: Comparison of Inflow-Based Vascular-Space-Occupancy and Dynamic Susceptibility Contrast MR Imaging
American Journal of Neuroradiology Apr 2020, 41 (4) 583-590; DOI: 10.3174/ajnr.A6466

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Discrimination between Glioblastoma and Solitary Brain Metastasis: Comparison of Inflow-Based Vascular-Space-Occupancy and Dynamic Susceptibility Contrast MR Imaging
X. Li, D. Wang, S. Liao, L. Guo, X. Xiao, X. Liu, Y. Xu, J. Hua, J.J. Pillai, Y. Wu
American Journal of Neuroradiology Apr 2020, 41 (4) 583-590; DOI: 10.3174/ajnr.A6466
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