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

Research ArticleAdult Brain

Brain Tumor-Enhancement Visualization and Morphometric Assessment: A Comparison of MPRAGE, SPACE, and VIBE MRI Techniques

L. Danieli, G.C. Riccitelli, D. Distefano, E. Prodi, E. Ventura, A. Cianfoni, A. Kaelin-Lang, M. Reinert and E. Pravatà
American Journal of Neuroradiology July 2019, 40 (7) 1140-1148; DOI: https://doi.org/10.3174/ajnr.A6096
L. Danieli
aFrom the Departments of Neuroradiology (L.D., D.D., E.P., E.V., A.C., E.P.)
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G.C. Riccitelli
bNeurology (G.C.R., A.K.-L.)
dNeuroimaging Research Unit (G.C.R.), Institute of Experimental Neurology, Division of Neuroscience, San Raffaele Scientific Institute, Vita-Salute San Raffaele University, Milan, Italy
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D. Distefano
aFrom the Departments of Neuroradiology (L.D., D.D., E.P., E.V., A.C., E.P.)
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E. Prodi
aFrom the Departments of Neuroradiology (L.D., D.D., E.P., E.V., A.C., E.P.)
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E. Ventura
aFrom the Departments of Neuroradiology (L.D., D.D., E.P., E.V., A.C., E.P.)
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A. Cianfoni
aFrom the Departments of Neuroradiology (L.D., D.D., E.P., E.V., A.C., E.P.)
eDepartments of Neuroradiology (A.C.)
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A. Kaelin-Lang
bNeurology (G.C.R., A.K.-L.)
fNeurology (A.K.-L.), Inselspital, Bern University Hospital, University of Bern, Bern, Switzerland
gFaculty of Biomedical Sciences (A.K.-L., M.R.), Università della Svizzera Italiana, Lugano, Switzerland.
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M. Reinert
cNeurosurgery (M.R.), Neurocenter of Southern Switzerland, Lugano, Switzerland
gFaculty of Biomedical Sciences (A.K.-L., M.R.), Università della Svizzera Italiana, Lugano, Switzerland.
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E. Pravatà
aFrom the Departments of Neuroradiology (L.D., D.D., E.P., E.V., A.C., E.P.)
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Abstract

BACKGROUND AND PURPOSE: Postgadolinium MR imaging is crucial for brain tumor diagnosis and morphometric assessment. We compared brain tumor enhancement visualization and the “target” object morphometry obtained with the most commonly used 3D MR imaging technique, MPRAGE, with 2 other routinely available techniques: sampling perfection with application-optimized contrasts by using different flip angle evolutions (SPACE) and volumetric interpolated brain examination (VIBE).

MATERIALS AND METHODS: Fifty-four contrast-enhancing tumors (38 gliomas and 16 metastases) were assessed using MPRAGE, VIBE, and SPACE techniques randomly acquired after gadolinium-based contrast agent administration on a 3T scanner. Enhancement conspicuity was assessed quantitatively by calculating the contrast rate and contrast-to-noise ratio, and qualitatively, by consensus visual comparative ratings. The total enhancing tumor volume and between-sequence discrepancy in the margin delineation were assessed on the corresponding 3D target objects contoured with a computer-assisted software for neuronavigation. The Wilcoxon signed rank and Pearson χ2 nonparametric tests were used to investigate between-sequence discrepancies in the contrast rate, contrast-to-noise ratio, visual conspicuity ratings, tumor volume, and margin delineation estimates. Differences were also tested for 1D (Response Evaluation Criteria in Solid Tumors) and 2D (Response Assessment in Neuro-Oncology) measurements.

RESULTS: Compared with MPRAGE, both SPACE and VIBE obtained higher contrast rate, contrast-to-noise ratio, and visual conspicuity ratings in both gliomas and metastases (P range, <.001–.001). The between-sequence 3D target object margin discrepancy ranged between 3% and 19.9% of lesion tumor volume. Larger tumor volumes, 1D and 2D measurements were obtained with SPACE (P range, <.01–.007).

CONCLUSIONS: Superior conspicuity for brain tumor enhancement can be achieved using SPACE and VIBE techniques, compared with MPRAGE. Discrepancies were also detected when assessing target object size and morphology, with SPACE providing more accurate estimates.

ABBREVIATIONS:

CEL
contrast-enhancing lesion
GBCA
gadolinium-based contrast agent
RANO
Response Assessment in Neuro-Oncology
RECIST
Response Evaluation Criteria in Solid Tumors
SPACE
sampling perfection with application-optimized contrasts using different flip angle evolution
TV
tumor volume
VIBE
volumetric interpolated brain examination
  • © 2019 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 40 (7)
American Journal of Neuroradiology
Vol. 40, Issue 7
1 Jul 2019
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Cite this article
L. Danieli, G.C. Riccitelli, D. Distefano, E. Prodi, E. Ventura, A. Cianfoni, A. Kaelin-Lang, M. Reinert, E. Pravatà
Brain Tumor-Enhancement Visualization and Morphometric Assessment: A Comparison of MPRAGE, SPACE, and VIBE MRI Techniques
American Journal of Neuroradiology Jul 2019, 40 (7) 1140-1148; DOI: 10.3174/ajnr.A6096

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Brain Tumor-Enhancement Visualization and Morphometric Assessment: A Comparison of MPRAGE, SPACE, and VIBE MRI Techniques
L. Danieli, G.C. Riccitelli, D. Distefano, E. Prodi, E. Ventura, A. Cianfoni, A. Kaelin-Lang, M. Reinert, E. Pravatà
American Journal of Neuroradiology Jul 2019, 40 (7) 1140-1148; DOI: 10.3174/ajnr.A6096
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