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Abstract #4296

Usages of Half Fourier single shot turbo spin echo with deep learning reconstruction and variable flip angle in gynecology

Mitsuhiro Kirita1, Yuki Himoto1, Aki Kido2, Yasuhisa Kurata1, Hiroyasu Abe3, Koji Fujimoto4, Yuka Matsumoto1, Kumi Harada1, Satoshi Morita5, Masaki Mandai6, and Yuji Nakamoto1
1Department of Diagnostic Imaging and Nuclear Medicine, Kyoto University Graduate School of Medicine, kyoto, Japan, 2Department of Radiology, Toyama University, Toyama, Japan, 3School of Pharmaceutical Sciences, Wakayama Medical University, Wakayama, Japan, 4Real World Data Research and Development, Kyoto University Graduate School of Medicine, kyoto, Japan, 5Department of Biomedical Statistics and Bioinformatics, Kyoto University Graduate School of Medicine, kyoto, Japan, 6Department of Gynecology and Obstetrics, Kyoto University Graduate School of Medicine, kyoto, Japan

Synopsis

Keywords: Pelvis, Uterus

Motivation: Without antispasmodics, obtaining T2-weighted images with robustness to artifacts and high tissue contrast is challenging in gynecologic MRI.

Goal(s): Our goals were to investigate HASTE with deep learning-reconstruction and a variable flip angle technique (iHASTE) outperforming conventional sequences without antispasmodics, and to explore its clinical usages.

Approach: The comparison between iHASTE, HASTE, and BLADE without antispasmodics, and the comparison between iHASTE without antispasmodics and TSE with antispasmodics, were performed.

Results: Without antispasmodics, iHASTE outperformed HASTE and BLADE. Compared with TSE with antispasmodics, iHASTE was superior in the robustness to artifact, although inferior in overall imaging quality.

Impact: In gynecologic MRI, HASTE with deep learning-reconstruction and a variable flip angle technique could be clinically the first choice when antispasmodics are unavailable. Even with antispasmodics, it could back up deteriorated TSE via artifacts, for its robustness and rapidity.

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Keywords