A novel normalization for amide proton transfer CEST MRI to correct for fat signal–induced artifacts: application to human breast cancer imaging
Ferdinand Zimmermann(German Cancer Research Center), Steffen Goerke(German Cancer Research Center), Sebastian Bickelhaupt(Friedrich-Alexander-Universität Erlangen-Nürnberg), Mark E. Ladd(German Cancer Research Center), Lisa Loi(German Cancer Research Center), Moritz Zaiß(Friedrich-Alexander-Universität Erlangen-Nürnberg), Patrick Schuenke(German Cancer Research Center), Heinz‐Peter Schlemmer(German Cancer Research Center), Peter Bachert(German Cancer Research Center), Andreas Korzowski(German Cancer Research Center), Daniel Paech(Mass General Brigham), Johannes Breitling(German Cancer Research Center), Jan‐Eric Meissner(German Cancer Research Center), Sarah Schott(Leibniz University Hannover)
Cited by 41
Related Papers
Pros and cons of ultra-high-field MRI/MRS for human application
|Progress in Nuclear Magnetic Resonance Spectroscopy|2018|542
Quantitative separation of CEST effect from magnetization transfer and spillover effects by Lorentzian-line-fit analysis of z-spectra
|Journal of Magnetic Resonance|2011|326
Chemical exchange saturation transfer (CEST) and MR<i>Z</i>-spectroscopy<i>in vivo</i>: a review of theoretical approaches and methods
|Physics in Medicine and Biology|2013|320
Inverse <i>Z</i>‐spectrum analysis for spillover‐, MT‐, and <i>T</i><sub>1</sub>‐corrected steady‐state pulsed CEST‐MRI – application to pH‐weighted MRI of acute stroke
|NMR in Biomedicine|2014|311
Review and consensus recommendations on clinical <scp>APT</scp>‐weighted imaging approaches at <scp>3T</scp>: Application to brain tumors
|Magnetic Resonance in Medicine|2022|236