Efficient T-2 mapping with blip-up/down EPI and gSlider-SMS (T2-BUDA-gSlider)
Purpose: To rapidly obtain high isotropic-resolution T-2 maps with whole-brain coverage and high geometric fidelity. Methods: A T-2 blip-up/down EPI acquisition with generalized slice-dithered enhanced resolution (T-2-BUDA-gSlider) is proposed. A RF-encoded multi-slab spin-echo (SE) EPI acquisition...
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Veröffentlicht in: | Magnetic resonance in medicine 2021-10, Vol.86 (4), p.2064-2075 |
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Sprache: | eng |
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Zusammenfassung: | Purpose: To rapidly obtain high isotropic-resolution T-2 maps with whole-brain coverage and high geometric fidelity.
Methods: A T-2 blip-up/down EPI acquisition with generalized slice-dithered enhanced resolution (T-2-BUDA-gSlider) is proposed. A RF-encoded multi-slab spin-echo (SE) EPI acquisition with multiple TEs was developed to obtain high SNR efficiency with reduced TR. This was combined with an interleaved 2-shot EPI acquisition using blip-up/down phase encoding. An estimated field map was incorporated into the joint multi-shot EPI reconstruction with a structured low rank constraint to achieve distortion-free and robust reconstruction for each slab without navigation. A Bloch simulated subspace model was integrated into gSlider reconstruction and used for T-2 quantification.
Results: In vivo results demonstrated that the T-2 values estimated by the proposed method were consistent with gold standard spin-echo acquisition. Compared to the reference 3D fast spin echo (FSE) images, distortion caused by off-resonance and eddy current effects were effectively mitigated.
Conclusion: BUDA-gSlider SE-EPI acquisition and gSlider-subspace joint reconstruction enabled distortion-free whole-brain T-2 mapping in 2 min at similar to 1 mm(3) isotropic resolution, which could bring significant benefits to related clinical and neuroscience applications. |
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ISSN: | 0740-3194 1522-2594 |
DOI: | 10.1002/mrm.28872 |