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Research ArticleFunctional

Presurgical Brain Mapping of the Ventral Somatomotor Network in Patients with Brain Tumors Using Resting-State fMRI

N. Yahyavi-Firouz-Abadi, J.J. Pillai, M.A. Lindquist, V.D. Calhoun, S. Agarwal, R.D. Airan, B. Caffo, S.K. Gujar and H.I. Sair
American Journal of Neuroradiology May 2017, 38 (5) 1006-1012; DOI: https://doi.org/10.3174/ajnr.A5132
N. Yahyavi-Firouz-Abadi
aFrom the Department of Radiology (N.Y.-F.-A.), Mid-Atlantic Permanente Medical Group of Kaiser Permanente, Kensington, Maryland
bDivision of Neuroradiology, (N.Y.-F.-A., J.J.P., S.A., R.D.A., S.K.G., H.I.S.), The Russell H. Morgan Department of Radiology and Radiological Sciences, Johns Hopkins University School of Medicine, Baltimore, Maryland
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J.J. Pillai
bDivision of Neuroradiology, (N.Y.-F.-A., J.J.P., S.A., R.D.A., S.K.G., H.I.S.), The Russell H. Morgan Department of Radiology and Radiological Sciences, Johns Hopkins University School of Medicine, Baltimore, Maryland
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M.A. Lindquist
cDepartment of Biostatistics (M.A.L., B.C.), Johns Hopkins University, Baltimore, Maryland
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V.D. Calhoun
dThe Mind Research Network (S.A., V.D.C.), Departments of Electrical and Computer Engineering, University of New Mexico, Albuquerque, New Mexico.
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S. Agarwal
bDivision of Neuroradiology, (N.Y.-F.-A., J.J.P., S.A., R.D.A., S.K.G., H.I.S.), The Russell H. Morgan Department of Radiology and Radiological Sciences, Johns Hopkins University School of Medicine, Baltimore, Maryland
dThe Mind Research Network (S.A., V.D.C.), Departments of Electrical and Computer Engineering, University of New Mexico, Albuquerque, New Mexico.
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R.D. Airan
bDivision of Neuroradiology, (N.Y.-F.-A., J.J.P., S.A., R.D.A., S.K.G., H.I.S.), The Russell H. Morgan Department of Radiology and Radiological Sciences, Johns Hopkins University School of Medicine, Baltimore, Maryland
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B. Caffo
cDepartment of Biostatistics (M.A.L., B.C.), Johns Hopkins University, Baltimore, Maryland
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S.K. Gujar
bDivision of Neuroradiology, (N.Y.-F.-A., J.J.P., S.A., R.D.A., S.K.G., H.I.S.), The Russell H. Morgan Department of Radiology and Radiological Sciences, Johns Hopkins University School of Medicine, Baltimore, Maryland
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H.I. Sair
bDivision of Neuroradiology, (N.Y.-F.-A., J.J.P., S.A., R.D.A., S.K.G., H.I.S.), The Russell H. Morgan Department of Radiology and Radiological Sciences, Johns Hopkins University School of Medicine, Baltimore, Maryland
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Abstract

BACKGROUND AND PURPOSE: Resting-state fMRI readily identifies the dorsal but less consistently the ventral somatomotor network. Our aim was to assess the relative utility of resting-state fMRI in the identification of the ventral somatomotor network via comparison with task-based fMRI in patients with brain tumor.

MATERIALS AND METHODS: We identified 26 surgically naïve patients referred for presurgical fMRI brain mapping who had undergone both satisfactory ventral motor activation tasks and resting-state fMRI. Following standard preprocessing for task-based fMRI and resting-state fMRI, general linear model analysis of the ventral motor tasks and independent component analysis of resting-state fMRI were performed with the number of components set to 20, 30, 40, and 50. Visual overlap of task-based fMRI and resting-state fMRI at different component levels was assessed and categorized as full match, partial match, or no match. Rest-versus-task-fMRI concordance was calculated with Dice coefficients across varying fMRI thresholds before and after noise removal. Multithresholded Dice coefficient volume under the surface was calculated.

RESULTS: The ventral somatomotor network was identified in 81% of patients. At the subject level, better matches between resting-state fMRI and task-based fMRI were seen with an increasing order of components (53% of cases for 20 components versus 73% for 50 components). Noise-removed group-mean volume under the surface improved as component numbers increased from 20 to 50, though ANOVA demonstrated no statistically significant difference among the 4 groups.

CONCLUSIONS: In most patients, the ventral somatomotor network can be identified with an increase in the probability of a better match at a higher component number. There is variable concordance of the ventral somatomotor network at the single-subject level between resting-state and task-based fMRI.

ABBREVIATIONS:

BOLD
blood oxygen level–dependent
ICA
independent component analysis
rs-fMRI
resting-state fMRI
tb-fMRI
task-based fMRI
VSMN
ventral somatomotor network
VUS
volume under the surface
  • © 2017 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 38 (5)
American Journal of Neuroradiology
Vol. 38, Issue 5
1 May 2017
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Cite this article
N. Yahyavi-Firouz-Abadi, J.J. Pillai, M.A. Lindquist, V.D. Calhoun, S. Agarwal, R.D. Airan, B. Caffo, S.K. Gujar, H.I. Sair
Presurgical Brain Mapping of the Ventral Somatomotor Network in Patients with Brain Tumors Using Resting-State fMRI
American Journal of Neuroradiology May 2017, 38 (5) 1006-1012; DOI: 10.3174/ajnr.A5132

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Presurgical Brain Mapping of the Ventral Somatomotor Network in Patients with Brain Tumors Using Resting-State fMRI
N. Yahyavi-Firouz-Abadi, J.J. Pillai, M.A. Lindquist, V.D. Calhoun, S. Agarwal, R.D. Airan, B. Caffo, S.K. Gujar, H.I. Sair
American Journal of Neuroradiology May 2017, 38 (5) 1006-1012; DOI: 10.3174/ajnr.A5132
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