Design of parallel transmission pulses for simultaneous multislice with explicit control for peak power and local specific absorption rate
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Title
Design of parallel transmission pulses for simultaneous multislice with explicit control for peak power and local specific absorption rate
Authors
Keywords
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Journal
MAGNETIC RESONANCE IN MEDICINE
Volume 73, Issue 5, Pages 1946-1953
Publisher
Wiley
Online
2014-06-18
DOI
10.1002/mrm.25325
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Related references
Note: Only part of the references are listed.- Local specific absorption rate (SAR), global SAR, transmitter power, and excitation accuracy trade-offs in low flip-angle parallel transmit pulse design
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- Blipped-controlled aliasing in parallel imaging for simultaneous multislice echo planar imaging with reduced g-factor penalty
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- Specific absorption rate reduction in parallel transmission by k-space adaptive radiofrequency pulse design
- (2010) Hanno Homann et al. MAGNETIC RESONANCE IN MEDICINE
- Multiband multislice GE-EPI at 7 tesla, with 16-fold acceleration using partial parallel imaging with application to high spatial and temporal whole-brain fMRI
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- Multiplexed Echo Planar Imaging for Sub-Second Whole Brain FMRI and Fast Diffusion Imaging
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- Fast MRI coil analysis based on 3-D electromagnetic and RF circuit co-simulation
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- Magnitude least squares optimization for parallel radio frequency excitation design demonstrated at 7 Tesla with eight channels
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