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Research ArticleBRAIN

T1-Weighted Fluid-Attenuated Inversion Recovery at Low Field Strength: A Viable Alternative for T1-Weighted Intracranial Imaging

Masaaki Hori, Toshiyuki Okubo, Kazuhito Uozumi, Keiichi Ishigame, Hiroshi Kumagai and Tsutomu Araki
American Journal of Neuroradiology April 2003, 24 (4) 648-651;
Masaaki Hori
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Toshiyuki Okubo
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Kazuhito Uozumi
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Keiichi Ishigame
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Hiroshi Kumagai
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Tsutomu Araki
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Abstract

BACKGROUND AND PURPOSE: T1-weighted spin-echo imaging has been widely used to study anatomic detail and abnormalities of the brain; however, the image contrast of this technique is often poor, especially at low field strengths. We tested a new pulse sequence, T1-weighted fluid-attenuated inversion recovery (FLAIR), which provides good contrast between lesions, surrounding edematous tissue, and normal parenchyma at low field strengths and at acquisition times comparable to those of T1-weighted spin-echo imaging.

METHODS: Thirteen patients with brain lesions underwent T1-weighted spin-echo and T1-weighted FLAIR imaging during the same imaging session. T1-weighted spin-echo and T1-weighted FLAIR images were compared on the basis of four quantitative (lesion-white matter [WM] contrast-to-noise ratio [CNR], lesion-CSF CNR, gray matter-WM CNR, and WM-CSF CNR) and three qualitative criteria (conspicuousness of lesions, image artifacts, and overall image contrast).

RESULTS: CNRs obtained with T1-weighted FLAIR were comparable but statistically superior to those obtained with T1-weighted spin-echo imaging. In general, T1-weighted FLAIR and T1-weighted spin-echo imaging produced comparable image artifacts. Conspicuousness of lesions and the overall image contrast were judged to be superior on T1-weighted FLAIR images.

CONCLUSION: T1-weighted FLAIR imaging may be a valuable alternative to conventional T1-weighted imaging, because the former technique offers superior image contrast at low field strengths and comparable acquisition times.

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American Journal of Neuroradiology: 24 (4)
American Journal of Neuroradiology
Vol. 24, Issue 4
1 Apr 2003
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Cite this article
Masaaki Hori, Toshiyuki Okubo, Kazuhito Uozumi, Keiichi Ishigame, Hiroshi Kumagai, Tsutomu Araki
T1-Weighted Fluid-Attenuated Inversion Recovery at Low Field Strength: A Viable Alternative for T1-Weighted Intracranial Imaging
American Journal of Neuroradiology Apr 2003, 24 (4) 648-651;

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T1-Weighted Fluid-Attenuated Inversion Recovery at Low Field Strength: A Viable Alternative for T1-Weighted Intracranial Imaging
Masaaki Hori, Toshiyuki Okubo, Kazuhito Uozumi, Keiichi Ishigame, Hiroshi Kumagai, Tsutomu Araki
American Journal of Neuroradiology Apr 2003, 24 (4) 648-651;
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