Phosphorus magnetic resonance spectroscopic imaging using flyback echo planar readout trajectories

Author:

Santos-Díaz Alejandro,Obruchkov Sergei I.,Schulte Rolf F.,Noseworthy Michael D.ORCID

Funder

CONACYT

Natural Sciences and Engineering Research Council of Canada

Publisher

Springer Science and Business Media LLC

Subject

Radiology Nuclear Medicine and imaging,Radiological and Ultrasound Technology,Biophysics

Reference25 articles.

1. Lee J-H, Komoroski RA, Chu W-J, Dudley JA (2012) Methods and applications of phosphorus NMR spectroscopy in vivo. In: Webb GA (ed) Annual Reports on NMR spectroscopy, vol 75. Elsevier, New York, pp 115–160

2. Bogner W, Chmelik M, Schmid AI, Moser E, Trattnig S, Gruber S (2009) Assessment of 31P relaxation times in the human calf muscle: a comparison between 3T and 7T in vivo. Magn Reson Med 62:574–582

3. Raghavan RS, Panda A, Valette J, James JR, Heberlein K, Boettcher U, Henry P-G, Bansal N, Dydak U (2009) 31P Spectroscopic Imaging with GRAPPA. In: Proceedings of the international society for magnetic resonance in medicine, Honolulu, p 4317

4. Hatay GH, Yildirim M, Ozturk-Isik E (2017) Considerations in applying compressed sensing to in vivo phosphorus MR spectroscopic imaging of human brain at 3T. Med Biol Eng Comput 55:1303–1315

5. Parasoglou P, Feng L, Xia D, Otazo R, Regatte RR (2012) Rapid 3D-imaging of phosphocreatine recovery kinetics in the human lower leg muscles with compressed sensing. Magn Reson Med 68:1738–1746

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