Taylor ACF, Little AF, Hennessy OF, et al. Prospective assessment of magnetic resonance cholangiopancreatography for noninvasive imaging of the biliary tree. Gastrointest Endosc. 2002;55:17–22.
Limanond P, Raman SS, Ghobrial RM, et al. The utility of MRCP in preoperative mapping of biliary anatomy in adult-to-adult living related liver transplant donors. J Magn Reson Imaging. 2004;19:209–15.
Matsubayashi H, Ishiwatari H, Sasaki K, et al. Detecting early pancreatic cancer: current problems and future prospects. Gut Liver. 2020;14:30–6.
Zins M. Breath-holding 3D MRCP: the time is now? Eur Radiol. 2018;28:3719–20.
Nakaura T, Kidoh M, Maruyama N, et al. Usefulness of the SPACE pulse sequence at 1.5T MR cholangiography: comparison of image quality and image acquisition time with conventional 3D-TSE sequence. J Magn Reson Imaging. 2013;38:1014–9.
Tanabe M, Onoda H, Higashi M, et al. Three-dimensional (3D) breath-hold zoomed MR cholangiopancreatography (MRCP): evaluation of additive value to conventional 3D navigator triggering MRCP in patients with branch duct intraductal papillary mucinous neoplasms. J Magn Reson Imaging. 2022;55:1234–40.
Tokoro H, Yamada A, Suzuki T, et al. Usefulness of breath-hold compressed sensing accelerated three-dimensional magnetic resonance cholangiopancreatography (MRCP) added to respiratory-gating conventional MRCP. Eur J Radiol. 2020;122: 108765.
Morita S, Ueno E, Suzuki K, et al. Navigator-triggered prospective acquisition correction (PACE) technique vs. conventional respiratory-triggered technique for free-breathing 3D MRCP: an initial prospective comparative study using healthy volunteers. J Magn Reson Imaging. 2008;28:673–7.
Morimoto D, Hyodo T, Kamata K, et al. Navigator-triggered and breath-hold 3D MRCP using compressed sensing: image quality and method selection factor assessment. Abdom Radiol (NY). 2020;45:3081–91.
Kromrey ML, Funayama S, Tamada D, et al. Clinical evaluation of respiratory-triggered 3D MRCP with navigator echoes compared to breath-hold acquisition using compressed sensing and/or parallel imaging. Magn Reson Med Sci. 2020;19:318–23.
Takemi S, Sakata I, Sakai T. The basics of the study of gastrointestinal motility. Nihon Shokakibyo Gakkai Zasshi. 2021;118:107–13.
Suzuki C, Fujisaki K, Atsumi Y, et al. Effects of valsalva maneuver by different breath-holding techniques to detect pulmonary thromboembolism in a contrast-enhanced computed tomography examination. Nihon Housyasen Gijutsu Gakkai Zasshi. 2017;73:273–81 (in Japanese).
Hanya S. Effect of abruptly increased intratracheal pressure (valsalva maneuver) on pulmonary circulation. Kokyu Junkan. 2008;56:323–9.
Higashi T, Murase K, Arakawa S, et al. Intraductal papillary mucinous carcinoma penetrating the colon in an elderly patient. Jpn J Gastroenterol Surg. 2020;53:657–64.
Iwai T, Nakao M, Nakamura M, et al. Estimation methods of pancreatic cancer displacement based on shape features of surrounding organs. In: Proceedings of the 63rd annual conference of the Institute of Systems, Control and Information Engineers (ISCIE). 2019; pp. 462–7.
Taniguchi A, Furukawa K, Tateyama T, et al. Automated assessment of small bowel motility function based on inter-frame difference. IEICE Tech Rep. 2013;113:25–30.
Okada K, Yamaue H. Current surgical treatment of extra-ampullary duodenal tumor. Nihon Shokakibyo Gakkai Zasshi. 2022;119:126–31.
Onuki T. The relationship between breathing function, diaphragm and the core. Jpn J Athl Train. 2019;5:27–34.
Fuse Y, Fukui T, Mito K. Relationships between chest and abdominal circumferences and the transversus abdominis thickness in healthy females. Rigakuryoho Kagaku. 2022;37:455–62.
Ohrui N, Fujita M, Kikukawa A, et al. Countermeasure and monitoring for gravity—induced loss of consciousness (G-LOC). JASDF AML Rep. 2016;56:43–66.
Terasawa Y, Sakai K, Arai A, et al. Timing of Valsalva maneuver and contrast injection for detecting patent foramen ovale on transesophageal echocardiography. Neurosonology. 2022;35:4–8.
Wataru S, Kouichi T, Youichi F, et al. Heart rate dependent idiopathic ventricular premature complexes originating from the right ventricular outflow tract. Shinzou. 1992;24:1100–5.
Comments (0)