Multislice B1 Mapping Method Using Magnetic Resonance Composite Spin Echo Sequences and Simultaneous Echo Refocusing

Author:

Kumar Suchit1ORCID,Lee Kyu Chan2ORCID,Kim Jong-Min1ORCID,Seo Jeung-Hoon3ORCID,Lee Chulhyun4ORCID,Oh Chang-Hyun15ORCID

Affiliation:

1. Research Institute for Advanced Industrial Technology, Korea University, Sejong 30019, Republic of Korea

2. Department of Radiation Oncology, Gil Medical Center, Gachon University College of Medicine, Incheon 21565, Republic of Korea

3. Neuroscience Research Institute, Gachon University, Incheon 21988, Republic of Korea

4. Bioimaging Research Team, Korea Basic Science Institute, Cheongju 28119, Republic of Korea

5. Department of Electronics and Information Engineering, Korea University, Sejong 30019, Republic of Korea

Abstract

Radiofrequency (RF) transmit field (B1) mapping is a promising method in mitigating the B1 inhomogeneity in various magnetic resonance imaging (MRI) applications. Although several phase- or magnitude-based B1 mapping methods have been proposed, these methods often require complex modeling, long acquisition time, or specialized MRI sequences. A recently introduced simultaneous echo refocusing (SER) technique can be applied in the B1 mapping method to extend the three-dimensional (3D) spatial coverage only without long data acquisition. Therefore, in this study, a multislice B1 mapping method using composite spin echo sequences and SER techniques is proposed to obtain more accurate B1 mapping with short data acquisition time. To evaluate the performance of the proposed B1 mapping method, computational simulations were performed and compared with Morrell’s method, double angle method, and Yarnykh’s method. These results showed that the angle-to-noise ratio of the proposed B1 mapping method has wider B1 range compared to that of other B1 mapping methods. In addition, the proposed B1 mapping methods were compared to the multislice iterative signal intensity mapping method in both phantom and in vivo human experiments, and there was no remarkable difference between the two methods regarding the flip angle distribution in these experiments. Based on these results, this study demonstrated that the proposed B1 mapping method is suitable for accurately measuring B1 propagation under the condition providing reduced scan time and wider 3D coverage of B1 mapping by applying composite RF pulse and SER techniques into the phase-sensitive method.

Funder

Ministry of Science, ICT and Future Planning

Publisher

Hindawi Limited

Subject

Spectroscopy

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