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Research ArticleBrain

Transition into Driven Equilibrium of the Balanced Steady-State Free Precession as an Ultrafast Multisection T2-Weighted Imaging of the Brain

Y.-C.K. Huang, T.-Y. Huang, H.-C. Chiu, T.-S. Kuo, C.-J. Hsueh, H.-W. Kao, C.-W. Wang, H.-H. Hsu and C.-J. Juan
American Journal of Neuroradiology June 2014, 35 (6) 1137-1144; DOI: https://doi.org/10.3174/ajnr.A3863
Y.-C.K. Huang
aFrom the Department of Electrical Engineering (Y.-C.K.H., T.-S.K.), National Taiwan University, Taipei, Taiwan, Republic of China
bDepartment of Radiology (Y.-C.K.H., C.-J.H., H.-W.K, C.-W.W., H.-H. H., C.-J.J.), Tri-Service General Hospital, Taipei, Taiwan, Republic of China
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T.-Y. Huang
cDepartment of Electrical Engineering (T.-Y.H.), National Taiwan University of Science and Technology, Taiwan, Republic of China
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H.-C. Chiu
dGraduate Institute of Design Science (H.-C.C.), Tatung University, Taipei, Taiwan, Republic of China
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T.-S. Kuo
aFrom the Department of Electrical Engineering (Y.-C.K.H., T.-S.K.), National Taiwan University, Taipei, Taiwan, Republic of China
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C.-J. Hsueh
bDepartment of Radiology (Y.-C.K.H., C.-J.H., H.-W.K, C.-W.W., H.-H. H., C.-J.J.), Tri-Service General Hospital, Taipei, Taiwan, Republic of China
eDepartment of Radiology (C.-J.H., H.-W.K, C.-W.W., H.-H. H., C.-J.J.), National Defense Medical Center, Taipei, Taiwan, Republic of China.
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H.-W. Kao
bDepartment of Radiology (Y.-C.K.H., C.-J.H., H.-W.K, C.-W.W., H.-H. H., C.-J.J.), Tri-Service General Hospital, Taipei, Taiwan, Republic of China
eDepartment of Radiology (C.-J.H., H.-W.K, C.-W.W., H.-H. H., C.-J.J.), National Defense Medical Center, Taipei, Taiwan, Republic of China.
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C.-W. Wang
bDepartment of Radiology (Y.-C.K.H., C.-J.H., H.-W.K, C.-W.W., H.-H. H., C.-J.J.), Tri-Service General Hospital, Taipei, Taiwan, Republic of China
eDepartment of Radiology (C.-J.H., H.-W.K, C.-W.W., H.-H. H., C.-J.J.), National Defense Medical Center, Taipei, Taiwan, Republic of China.
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H.-H. Hsu
bDepartment of Radiology (Y.-C.K.H., C.-J.H., H.-W.K, C.-W.W., H.-H. H., C.-J.J.), Tri-Service General Hospital, Taipei, Taiwan, Republic of China
eDepartment of Radiology (C.-J.H., H.-W.K, C.-W.W., H.-H. H., C.-J.J.), National Defense Medical Center, Taipei, Taiwan, Republic of China.
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C.-J. Juan
bDepartment of Radiology (Y.-C.K.H., C.-J.H., H.-W.K, C.-W.W., H.-H. H., C.-J.J.), Tri-Service General Hospital, Taipei, Taiwan, Republic of China
eDepartment of Radiology (C.-J.H., H.-W.K, C.-W.W., H.-H. H., C.-J.J.), National Defense Medical Center, Taipei, Taiwan, Republic of China.
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Abstract

BACKGROUND AND PURPOSE: Current T2-weighted imaging takes >3 minutes to perform, for which the ultrafast transition into driven equilibrium (TIDE) technique may be potentially helpful. This study qualitatively and quantitatively evaluates the imaging of transition into driven equilibrium of the balanced steady-state free precession (TIDE) compared with TSE and turbo gradient spin-echo on T2-weighted MR images.

MATERIALS AND METHODS: Thirty healthy volunteers were examined with T2-weighted images by using TIDE, TSE, and turbo gradient spin-echo sequences. Imaging was evaluated qualitatively by 2 independent observers on the basis of a 4-point rating scale regarding contrast characteristics and artifacts behavior. Image SNR and contrast-to-noise ratio were quantitatively assessed.

RESULTS: TIDE provided T2-weighted contrast similar to that in TSE and turbo gradient spin-echo with only one-eighth of the scan time. TIDE showed gray-white matter differentiation and iron-load sensitivity inferior that of TSE and turbo gradient spin-echo, but with improved motion artifacts reduction on qualitative scores. Nonmotion ghosting artifacts were uniquely found in TIDE images. The overall SNRs of TSE were 1.9–2.0 times those of turbo gradient spin-echo and 1.7–2.2 times of those of TIDE for brain tissue (P < .0001). TIDE had a higher contrast-to-noise ratio than TSE (P = .169) and turbo gradient spin-echo (P < .0001) regarding non-iron-containing gray matter versus white matter. TIDE had a lower contrast-to-noise ratio than turbo gradient spin-echo and TSE (P < .0001) between iron-containing gray matter and white matter.

CONCLUSIONS: TIDE provides T2-weighted images with reduced scan times and reduced motion artifacts compared with TSE and turbo gradient spin-echo with the trade-off of reduced SNR and poorer gray-white matter differentiation.

ABBREVIATIONS:

CNR
contrast-to-noise ratio
TGSE
turbo gradient spin-echo
TIDE
transition into driven equilibrium
  • © 2014 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 35 (6)
American Journal of Neuroradiology
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1 Jun 2014
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Y.-C.K. Huang, T.-Y. Huang, H.-C. Chiu, T.-S. Kuo, C.-J. Hsueh, H.-W. Kao, C.-W. Wang, H.-H. Hsu, C.-J. Juan
Transition into Driven Equilibrium of the Balanced Steady-State Free Precession as an Ultrafast Multisection T2-Weighted Imaging of the Brain
American Journal of Neuroradiology Jun 2014, 35 (6) 1137-1144; DOI: 10.3174/ajnr.A3863

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Transition into Driven Equilibrium of the Balanced Steady-State Free Precession as an Ultrafast Multisection T2-Weighted Imaging of the Brain
Y.-C.K. Huang, T.-Y. Huang, H.-C. Chiu, T.-S. Kuo, C.-J. Hsueh, H.-W. Kao, C.-W. Wang, H.-H. Hsu, C.-J. Juan
American Journal of Neuroradiology Jun 2014, 35 (6) 1137-1144; DOI: 10.3174/ajnr.A3863
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