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

Research ArticleAdult Brain
Open Access

High-Resolution DCE-MRI of the Pituitary Gland Using Radial k-Space Acquisition with Compressed Sensing Reconstruction

M.C. Rossi Espagnet, L. Bangiyev, M. Haber, K.T. Block, J. Babb, V. Ruggiero, F. Boada, O. Gonen and G.M. Fatterpekar
American Journal of Neuroradiology August 2015, 36 (8) 1444-1449; DOI: https://doi.org/10.3174/ajnr.A4324
M.C. Rossi Espagnet
aFrom the Department of Radiology, New York University Langone Medical Center, New York, New York.
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L. Bangiyev
aFrom the Department of Radiology, New York University Langone Medical Center, New York, New York.
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  • ORCID record for L. Bangiyev
M. Haber
aFrom the Department of Radiology, New York University Langone Medical Center, New York, New York.
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K.T. Block
aFrom the Department of Radiology, New York University Langone Medical Center, New York, New York.
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J. Babb
aFrom the Department of Radiology, New York University Langone Medical Center, New York, New York.
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V. Ruggiero
aFrom the Department of Radiology, New York University Langone Medical Center, New York, New York.
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F. Boada
aFrom the Department of Radiology, New York University Langone Medical Center, New York, New York.
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O. Gonen
aFrom the Department of Radiology, New York University Langone Medical Center, New York, New York.
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G.M. Fatterpekar
aFrom the Department of Radiology, New York University Langone Medical Center, New York, New York.
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Abstract

BACKGROUND AND PURPOSE: The pituitary gland is located outside of the blood-brain barrier. Dynamic T1 weighted contrast enhanced sequence is considered to be the gold standard to evaluate this region. However, it does not allow assessment of intrinsic permeability properties of the gland. Our aim was to demonstrate the utility of radial volumetric interpolated brain examination with the golden-angle radial sparse parallel technique to evaluate permeability characteristics of the individual components (anterior and posterior gland and the median eminence) of the pituitary gland and areas of differential enhancement and to optimize the study acquisition time.

MATERIALS AND METHODS: A retrospective study was performed in 52 patients (group 1, 25 patients with normal pituitary glands; and group 2, 27 patients with a known diagnosis of microadenoma). Radial volumetric interpolated brain examination sequences with golden-angle radial sparse parallel technique were evaluated with an ROI-based method to obtain signal-time curves and permeability measures of individual normal structures within the pituitary gland and areas of differential enhancement. Statistical analyses were performed to assess differences in the permeability parameters of these individual regions and optimize the study acquisition time.

RESULTS: Signal-time curves from the posterior pituitary gland and median eminence demonstrated a faster wash-in and time of maximum enhancement with a lower peak of enhancement compared with the anterior pituitary gland (P < .005). Time-optimization analysis demonstrated that 120 seconds is ideal for dynamic pituitary gland evaluation. In the absence of a clinical history, differences in the signal-time curves allow easy distinction between a simple cyst and a microadenoma.

CONCLUSIONS: This retrospective study confirms the ability of the golden-angle radial sparse parallel technique to evaluate the permeability characteristics of the pituitary gland and establishes 120 seconds as the ideal acquisition time for dynamic pituitary gland imaging.

ABBREVIATIONS:

GRASP
golden-angle radial sparse parallel
STC
signal-time curve
VIBE
volumetric interpolated brain examination
  • © 2015 by American Journal of Neuroradiology

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American Journal of Neuroradiology: 36 (8)
American Journal of Neuroradiology
Vol. 36, Issue 8
1 Aug 2015
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Cite this article
M.C. Rossi Espagnet, L. Bangiyev, M. Haber, K.T. Block, J. Babb, V. Ruggiero, F. Boada, O. Gonen, G.M. Fatterpekar
High-Resolution DCE-MRI of the Pituitary Gland Using Radial k-Space Acquisition with Compressed Sensing Reconstruction
American Journal of Neuroradiology Aug 2015, 36 (8) 1444-1449; DOI: 10.3174/ajnr.A4324

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High-Resolution DCE-MRI of the Pituitary Gland Using Radial k-Space Acquisition with Compressed Sensing Reconstruction
M.C. Rossi Espagnet, L. Bangiyev, M. Haber, K.T. Block, J. Babb, V. Ruggiero, F. Boada, O. Gonen, G.M. Fatterpekar
American Journal of Neuroradiology Aug 2015, 36 (8) 1444-1449; DOI: 10.3174/ajnr.A4324
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