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Research ArticleBrain

Potential Role of Preoperative Conventional MRI Including Diffusion Measurements in Assessing Epidermal Growth Factor Receptor Gene Amplification Status in Patients with Glioblastoma

R.J. Young, A. Gupta, A.D. Shah, J.J. Graber, A.D. Schweitzer, A. Prager, W. Shi, Z. Zhang, J. Huse and A.M.P. Omuro
American Journal of Neuroradiology December 2013, 34 (12) 2271-2277; DOI: https://doi.org/10.3174/ajnr.A3604
R.J. Young
aFrom the Departments of Radiology (R.J.Y., A.D. Shah, A.D. Schweitzer, A.P.)
eBrain Tumor Center (R.J.Y., A.M.P.O.), Memorial Sloan-Kettering Cancer Center, New York, New York
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A. Gupta
fDepartment of Radiology (A.G.), Weill Cornell Medical College/New York Presbyterian Hospital, New York, New York.
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A.D. Shah
aFrom the Departments of Radiology (R.J.Y., A.D. Shah, A.D. Schweitzer, A.P.)
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J.J. Graber
bNeurology (J.J.G., A.M.P.O.)
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A.D. Schweitzer
aFrom the Departments of Radiology (R.J.Y., A.D. Shah, A.D. Schweitzer, A.P.)
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A. Prager
aFrom the Departments of Radiology (R.J.Y., A.D. Shah, A.D. Schweitzer, A.P.)
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W. Shi
cEpidemiology and Biostatistics (W.S., Z.Z.)
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Z. Zhang
cEpidemiology and Biostatistics (W.S., Z.Z.)
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J. Huse
dPathology (J.H.)
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A.M.P. Omuro
bNeurology (J.J.G., A.M.P.O.)
eBrain Tumor Center (R.J.Y., A.M.P.O.), Memorial Sloan-Kettering Cancer Center, New York, New York
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Abstract

BACKGROUND AND PURPOSE: Epidermal growth factor receptor amplification is a common molecular event in glioblastomas. The purpose of this study was to examine the potential usefulness of morphologic and diffusion MR imaging signs in the prediction of epidermal growth factor receptor gene amplification status in patients with glioblastoma.

MATERIALS AND METHODS: We analyzed pretreatment MR imaging scans from 147 consecutive patients with newly diagnosed glioblastoma and correlated MR imaging features with tumor epidermal growth factor receptor amplification status. The following morphologic tumor MR imaging features were qualitatively assessed: 1) border sharpness, 2) cystic/necrotic change, 3) hemorrhage, 4) T2-isointense signal, 5) restricted water diffusion, 6) nodular enhancement, 7) subependymal enhancement, and 8) multifocal discontinuous enhancement. A total of 142 patients had DWI available for quantitative analysis. ADC maps were calculated, and the ADCmean, ADCmin, ADCmax, ADCROI, and ADCratio were measured.

RESULTS: Epidermal growth factor receptor amplification was present in 60 patients (40.8%) and absent in 87 patients (59.2%). Restricted water diffusion correlated with epidermal growth factor receptor amplification (P = .04), whereas the other 7 morphologic MR imaging signs did not (P > .12). Quantitative DWI analysis found that all ADC measurements correlated with epidermal growth factor receptor amplification, with the highest correlations found with ADCROI (P = .0003) and ADCmean (P = .0007).

CONCLUSIONS: Our results suggest a role for diffusion MR imaging in the determination of epidermal growth factor receptor amplification status in glioblastoma. Additional work is necessary to confirm these results and isolate new imaging biomarkers capable of noninvasively characterizing the molecular status of these tumors.

ABBREVIATIONS:

EGFR
epidermal growth factor receptor
GRE
gradient recalled-echo
  • © 2013 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 34 (12)
American Journal of Neuroradiology
Vol. 34, Issue 12
1 Dec 2013
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Cite this article
R.J. Young, A. Gupta, A.D. Shah, J.J. Graber, A.D. Schweitzer, A. Prager, W. Shi, Z. Zhang, J. Huse, A.M.P. Omuro
Potential Role of Preoperative Conventional MRI Including Diffusion Measurements in Assessing Epidermal Growth Factor Receptor Gene Amplification Status in Patients with Glioblastoma
American Journal of Neuroradiology Dec 2013, 34 (12) 2271-2277; DOI: 10.3174/ajnr.A3604

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Potential Role of Preoperative Conventional MRI Including Diffusion Measurements in Assessing Epidermal Growth Factor Receptor Gene Amplification Status in Patients with Glioblastoma
R.J. Young, A. Gupta, A.D. Shah, J.J. Graber, A.D. Schweitzer, A. Prager, W. Shi, Z. Zhang, J. Huse, A.M.P. Omuro
American Journal of Neuroradiology Dec 2013, 34 (12) 2271-2277; DOI: 10.3174/ajnr.A3604
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