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Compensation for spin-lock artifacts using an off-resonance rotary echo in T1rhooff-weighted imaging.
Authors:Walter R T Witschey  Arijitt Borthakur  Mark A Elliott  Eric Mellon  Sampreet Niyogi  Chenyang Wang  Ravinder Reddy
Affiliation:Department of Biochemistry & Molecular Biophysics, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6100, USA. witschey@med.upenn.edu
Abstract:The origin of image artifacts in an off-resonance spin-locking experiment is shown to be imperfections in the excitation flip angle. A pulse sequence for off-resonance spin locking is implemented that compensates for imperfections in the excitation flip angle through an off-resonance rotary echo. The off-resonance rotary echo alternates the frequency offset and phase of the RF transmitter during two spin-locking pulses of equal duration. The underlying theory is detailed, and MR images demonstrate the effectiveness of the technique in agarose gel phantoms and in in vivo human brain at 3T.
Keywords:off‐resonance T1ρ  spin locking  T1ρ‐weighted imaging  rotary echo  T1ρ relaxation
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