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Research ArticleBrainF

Differentiation between Glioblastomas, Solitary Brain Metastases, and Primary Cerebral Lymphomas Using Diffusion Tensor and Dynamic Susceptibility Contrast-Enhanced MR Imaging

S. Wang, S. Kim, S. Chawla, R.L. Wolf, D.E. Knipp, A. Vossough, D.M. O'Rourke, K.D. Judy, H. Poptani and E.R. Melhem
American Journal of Neuroradiology March 2011, 32 (3) 507-514; DOI: https://doi.org/10.3174/ajnr.A2333
S. Wang
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S. Kim
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S. Chawla
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R.L. Wolf
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D.E. Knipp
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A. Vossough
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D.M. O'Rourke
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K.D. Judy
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H. Poptani
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E.R. Melhem
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Abstract

BACKGROUND AND PURPOSE: Glioblastomas, brain metastases, and PCLs may have similar enhancement patterns on MR imaging, making the differential diagnosis difficult or even impossible. The purpose of this study was to determine whether a combination of DTI and DSC can assist in the differentiation of glioblastomas, solitary brain metastases, and PCLs.

MATERIALS AND METHODS: Twenty-six glioblastomas, 25 brain metastases, and 16 PCLs were retrospectively identified. DTI metrics, including FA, ADC, CL, CP, CS, and rCBV were measured from the enhancing, immediate peritumoral and distant peritumoral regions. A 2-level decision tree was designed, and a multivariate logistic regression analysis was used at each level to determine the best model for classification.

RESULTS: From the enhancing region, significantly elevated FA, CL, and CP and decreased CS values were observed in glioblastomas compared with brain metastases and PCLs (P < .001), whereas ADC, rCBV, and rCBVmax values of glioblastomas were significantly higher than those of PCLs (P < .01). The best model to distinguish glioblastomas from nonglioblastomas consisted of ADC, CS (or FA) from the enhancing region, and rCBV from the immediate peritumoral region, resulting in AUC = 0.938. The best predictor to differentiate PCLs from brain metastases comprised ADC from the enhancing region and CP from the immediate peritumoral region with AUC = 0.909.

CONCLUSIONS: The combination of DTI metrics and rCBV measurement can help in the differentiation of glioblastomas from brain metastases and PCLs.

Abbreviations

ADC
apparent diffusion coefficient
AUC
area under the curve
CBV
cerebral blood volume
CL
linear anisotropy coefficient
CP
planar anisotropy coefficient
CS
spheric anisotropy coefficient
DPR
distant peritumoral region
DSC
dynamic susceptibility contrast-enhanced
DTI
diffusion tensor imaging
ER
enhancing region
FA
fractional anisotropy
FLAIR
fluid-attenuated inversion recovery
GRAPPA
generalized autocalibrating partially parallel acquisition
IPR
immediate peritumoral region
LRM
logistic regression model
MPRAGE
magnetization-prepared rapid acquisition of gradient echo
PCL
primary cerebral lymphoma
PWI
perfusion-weighted imaging
rCBV
relative cerebral blood volume
rCBVmax
maximum relative cerebral blood volume
ROC
receiver operating characteristic analysis
ROI
region of interest
WM
white matter
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American Journal of Neuroradiology: 32 (3)
American Journal of Neuroradiology
Vol. 32, Issue 3
1 Mar 2011
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S. Wang, S. Kim, S. Chawla, R.L. Wolf, D.E. Knipp, A. Vossough, D.M. O'Rourke, K.D. Judy, H. Poptani, E.R. Melhem
Differentiation between Glioblastomas, Solitary Brain Metastases, and Primary Cerebral Lymphomas Using Diffusion Tensor and Dynamic Susceptibility Contrast-Enhanced MR Imaging
American Journal of Neuroradiology Mar 2011, 32 (3) 507-514; DOI: 10.3174/ajnr.A2333

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Differentiation between Glioblastomas, Solitary Brain Metastases, and Primary Cerebral Lymphomas Using Diffusion Tensor and Dynamic Susceptibility Contrast-Enhanced MR Imaging
S. Wang, S. Kim, S. Chawla, R.L. Wolf, D.E. Knipp, A. Vossough, D.M. O'Rourke, K.D. Judy, H. Poptani, E.R. Melhem
American Journal of Neuroradiology Mar 2011, 32 (3) 507-514; DOI: 10.3174/ajnr.A2333
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  • Diffusion-Weighted Imaging and Diffusion Tensor Imaging for Differentiating High-Grade Glioma from Solitary Brain Metastasis: A Systematic Review and Meta-Analysis
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  • Differentiating Tumor Progression from Pseudoprogression in Patients with Glioblastomas Using Diffusion Tensor Imaging and Dynamic Susceptibility Contrast MRI
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  • Evaluation of Microvascular Permeability with Dynamic Contrast-Enhanced MRI for the Differentiation of Primary CNS Lymphoma and Glioblastoma: Radiologic-Pathologic Correlation
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