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Research ArticleAdult Brain

Utility of Contrast-Enhanced T2 FLAIR for Imaging Brain Metastases Using a Half-dose High-Relaxivity Contrast Agent

T. Jin, M. Ge, R. Huang, Y. Yang, T. Liu, Q. Zhan, Z. Yao and H. Zhang
American Journal of Neuroradiology March 2021, 42 (3) 457-463; DOI: https://doi.org/10.3174/ajnr.A6931
T. Jin
aFrom the Department of Radiology (T.J.), Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China
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M. Ge
bDepartment of Oncology (M.G., R.H., T.L., Q.Z.)
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R. Huang
bDepartment of Oncology (M.G., R.H., T.L., Q.Z.)
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Y. Yang
dDepartment of Oncology (Y.Y.), Huashan North Hospital, Fudan University, Shanghai, China
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T. Liu
bDepartment of Oncology (M.G., R.H., T.L., Q.Z.)
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Q. Zhan
bDepartment of Oncology (M.G., R.H., T.L., Q.Z.)
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Z. Yao
cRadiology (Z.Y.), Huashan Hospital, Fudan University, Shanghai, China
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H. Zhang
eDepartment of Radiology (H.Z.), The Affiliated Hospital of Qingdao University, Qingdao, China
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Abstract

BACKGROUND AND PURPOSE: Efficient detection of metastases is important for patient’ treatment. This prospective study was to explore the clinical value of contrast-enhanced T2 FLAIR in imaging brain metastases using half-dose gadobenate dimeglumine.

MATERIALS AND METHODS: In vitro signal intensity of various gadolinium concentrations was explored by spin-echo T1-weighted imaging and T2 FLAIR. Then, 46 patients with lung cancer underwent nonenhanced T2 FLAIR before administration of half-dose gadobenate dimeglumine and 3 consecutive contrast-enhanced T2 FLAIR sequences followed by 1 spin-echo T1WI after administration of half-dose gadobenate dimeglumine. After an additional dose of 0.05 mmol/kg, 3D brain volume imaging was performed. All brain metastases were classified as follows: solid-enhancing, ≥ 5 mm (group A); ring-enhancing, ≥ 5 mm (group B); and lesion diameter of <5 mm (group C). The contrast ratio of the lesions on 3 consecutive phases of contrast-enhanced T2 FLAIR was measured, and the percentage increase of contrast-enhanced T2 FLAIR among the 3 groups was compared.

RESULTS: In vitro, the maximal signal intensity was achieved in T2 FLAIR at one-eighth to one-half of the contrast concentration needed for maximal signal intensity in T1WI. In vivo, the mean contrast ratio values of metastases on contrast-enhanced T2 FLAIR for the 3 consecutive phases ranged from 63.64% to 83.05%. The percentage increase (PI) values of contrast-enhanced T2 FLAIR were as follows: PIA < PIB (P = .001) and PIA < PIC (P < .001). The degree of enhancement of brain metastases on contrast-enhanced T2 FLAIR was lower than on 3D brain volume imaging (P < .001) in group A, and higher than on 3D brain volume imaging (P < .001) in group C.

CONCLUSIONS: Small or ring-enhancing metastases can be better visualized on delayed contrast-enhanced T2 FLAIR using a half-dose high-relaxivity contrast agent.

ABBREVIATIONS:

BRAVO
brain volume imaging
CE
contrast-enhanced
CR
contrast ratio
GBCA
gadolinium-based contrast agents
PI
percentage increase
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American Journal of Neuroradiology: 42 (3)
American Journal of Neuroradiology
Vol. 42, Issue 3
1 Mar 2021
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Utility of Contrast-Enhanced T2 FLAIR for Imaging Brain Metastases Using a Half-dose High-Relaxivity Contrast Agent
T. Jin, M. Ge, R. Huang, Y. Yang, T. Liu, Q. Zhan, Z. Yao, H. Zhang
American Journal of Neuroradiology Mar 2021, 42 (3) 457-463; DOI: 10.3174/ajnr.A6931

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Utility of Contrast-Enhanced T2 FLAIR for Imaging Brain Metastases Using a Half-dose High-Relaxivity Contrast Agent
T. Jin, M. Ge, R. Huang, Y. Yang, T. Liu, Q. Zhan, Z. Yao, H. Zhang
American Journal of Neuroradiology Mar 2021, 42 (3) 457-463; DOI: 10.3174/ajnr.A6931
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