Literature DB >> 20815077

T(2)-weighted 3D fast spin echo imaging with water-fat separation in a single acquisition.

Ananth J Madhuranthakam1, Huanzhou Yu, Ann Shimakawa, Reed F Busse, Martin P Smith, Scott B Reeder, Neil M Rofsky, Jean H Brittain, Charles A McKenzie.   

Abstract

PURPOSE: To develop a robust 3D fast spin echo (FSE) T(2)-weighted imaging method with uniform water and fat separation in a single acquisition, amenable to high-quality multiplanar reformations.
MATERIALS AND METHODS: The Iterative Decomposition of water and fat with Echo Asymmetry and Least squares estimation (IDEAL) method was integrated with modulated refocusing flip angle 3D-FSE. Echoes required for IDEAL processing were acquired by shifting the readout gradient with respect to the Carr-Purcell-Meiboom-Gill echo. To reduce the scan time, an alternative data acquisition using two gradient echoes per repetition was implemented. Using the latter approach, a total of four gradient echoes were acquired in two repetitions and used in the modified IDEAL reconstruction.
RESULTS: 3D-FSE T(2)-weighted images with uniform water-fat separation were successfully acquired in various anatomies including breast, abdomen, knee, and ankle in clinically feasible scan times, ranging from 5:30-8:30 minutes. Using water-only and fat-only images, in-phase and out-of-phase images were reconstructed.
CONCLUSION: 3D-FSE-IDEAL provides volumetric T(2)-weighted images with uniform water and fat separation in a single acquisition. High-resolution images with multiple contrasts can be reformatted to any orientation from a single acquisition. This could potentially replace 2D-FSE acquisitions with and without fat suppression and in multiple planes, thus improving overall imaging efficiency.

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Year:  2010        PMID: 20815077      PMCID: PMC4240221          DOI: 10.1002/jmri.22282

Source DB:  PubMed          Journal:  J Magn Reson Imaging        ISSN: 1053-1807            Impact factor:   4.813


  30 in total

1.  Field map estimation with a region growing scheme for iterative 3-point water-fat decomposition.

Authors:  Huanzhou Yu; Scott B Reeder; Ann Shimakawa; Jean H Brittain; Norbert J Pelc
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2.  Homodyne reconstruction and IDEAL water-fat decomposition.

Authors:  Scott B Reeder; Brian A Hargreaves; Huanzhou Yu; Jean H Brittain
Journal:  Magn Reson Med       Date:  2005-09       Impact factor: 4.668

3.  Cramér-Rao bounds for three-point decomposition of water and fat.

Authors:  Angel R Pineda; Scott B Reeder; Zhifei Wen; Norbert J Pelc
Journal:  Magn Reson Med       Date:  2005-09       Impact factor: 4.668

4.  Iterative decomposition of water and fat with echo asymmetry and least-squares estimation (IDEAL): application with fast spin-echo imaging.

Authors:  Scott B Reeder; Angel R Pineda; Zhifei Wen; Ann Shimakawa; Huanzhou Yu; Jean H Brittain; Garry E Gold; Christopher H Beaulieu; Norbert J Pelc
Journal:  Magn Reson Med       Date:  2005-09       Impact factor: 4.668

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6.  The sensitivity of low flip angle RARE imaging.

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8.  Three-dimensional fast spin-echo imaging: pulse sequence and in vivo image evaluation.

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9.  Water-fat imaging with direct phase encoding.

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  9 in total

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Authors:  Shreyas S Vasanawala; Ananth J Madhuranthakam; Ramesh Venkatesan; Arvind Sonik; Peng Lai; Anja C S Brau
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Review 2.  Magnetic resonance neurography: current perspectives and literature review.

Authors:  Avneesh Chhabra; Ananth J Madhuranthakam; Gustav Andreisek
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3.  Faster pediatric 3-T abdominal magnetic resonance imaging: comparison between conventional and variable refocusing flip-angle single-shot fast spin-echo sequences.

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5.  Automated breast segmentation of fat and water MR images using dynamic programming.

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7.  3D T2-weighted spin echo imaging in the breast.

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Journal:  J Magn Reson Imaging       Date:  2013-04-17       Impact factor: 4.813

8.  High-resolution 3D radial bSSFP with IDEAL.

Authors:  Catherine J Moran; Ethan K Brodsky; Leah Henze Bancroft; Scott B Reeder; Huanzhou Yu; Richard Kijowski; Dorothee Engel; Walter F Block
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Review 9.  Rotator cuff tear degeneration and the role of fibro-adipogenic progenitors.

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