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Dynamic T2 mapping by multi-spin-echo spatiotemporal encoding

delete2020-01-20
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PRE
AI
Q
Qingjia Bao
L
Lingceng Ma
G
Gilad Liberman
E
Eddy Solomon
R
Ricardo P. Martinho
L
Lucio Frydman *
DOI:10.1002/mrm.28158delete
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Abstract

Abstract

En 中文
Purpose To develop a pulse sequence for acquiring robust, quantitative T-2 relaxation maps in real time. Methods The pulse scheme relies on fully refocused spatiotemporally encoded multi-spin-echo trains, which provide images that are significantly less distorted than spin-echo echo planar imaging-based counterparts. This enables single-shot T-2 mapping in inhomogeneity-prone regions. Another advantage of these schemes stems from their ability to interleave multiple scans in a reference-free manner, providing an option to increase sensitivity and spatial resolution with minimal motional artifacts. Results The method was implemented in preclinical and clinical scanners, where single-shot acquisitions delivered reliable T-2 maps in <= 200 ms with approximate to 250 mu m and approximate to 3 mm resolutions, respectively. Ca. 4 times higher spatial resolutions were achieved for the motion-compensated interleaved versions of these acquisitions, delivering T-2 maps in ca. 10 s per slice. These maps were nearly indistinguishable from multi-scan relaxometric maps requiring orders-of-magnitude longer acquisitions; this was confirmed by mice head and real-time mice abdomen 7T scans performed following contrast-agent injections, as well as by 3T human brain and breast scans. Conclusion This study introduced and demonstrated a new approach for acquiring rapid and quantitative T-2 data, which is particularly reliable when operating at high fields and/or targeting heterogeneous organs or regions.
Keywords:
abdominal imaging
breast MRI
multi-spin-echo sequences
quantitative T2 mapping
spatiotemporal encoding
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Journal

Magnetic Resonance in Medicine cover
Magnetic Resonance in Medicine
IF:
3
Papers:
1.2W
Citations:
3.1W

Organization

W
Weizmann Institute of Science
Scholars:
1.3W
Papers: 1.1W
Citations: 2.3W