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FID-calibrated simultaneous multi-slice fast spin echo with long trains of hard pulses

Cited 1 time in Web of Science Cited 1 time in Scopus
Authors

Lim, Eun Ji; Sohn, Chul-Ho; Shin, Taehoon; Park, Jaeseok

Issue Date
2022-02-07
Publisher
Institute of Physics Publishing
Citation
Physics in Medicine and Biology, Vol.67 No.3, p. 035002
Abstract
Objective. To develop a novel, free-induction-decay (FID)-calibrated single-shot simultaneous multi-slice fast spin echo (SMS-FSE) with very long hard pulse trains for high encoding efficiency and low energy deposition. Approach. The proposed single-shot SMS-FSE employs a mixed pulse configuration in which a long excitation pulse that is spatially multi-band (MB) selective is used in conjunction with short spatially nonselective refocusing pulses. To alleviate energy deposition to tissues while reducing signal modulation along the echo train, variable low flip angles with signal prescription are utilized in the refocusing pulse train. A time-efficient FID calibration and correction method is introduced before aliased voxels in the slice direction are resolved. Simulations and experiments are performed to demonstrate the feasibility of the proposed method as an alternative to conventional HASTE for generating T (2)-weighted images. Main results. Compared with conventional HASTE, the proposed method enhances imaging speed effectively by an MB factor up to 5 without apparent loss of image contrast while successfully eliminating FID artifacts. Significance. We successfully demonstrated the feasibility of the proposed method as an encoding- and energy-efficient alternative to conventional HASTE for generation of T (2)-weighted contrast.
ISSN
0031-9155
URI
https://hdl.handle.net/10371/177986
DOI
https://doi.org/10.1088/1361-6560/ac499a
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