A 32-channel combined RF and B0 shim array for 3T brain imaging
about
Three-dimensional MR spectroscopic imaging using adiabatic spin echo and hypergeometric dual-band suppression for metabolic mapping over the entire brain.Toward 20 T magnetic resonance for human brain studies: opportunities for discovery and neuroscience rationaleB0 magnetic field homogeneity and shimming for in vivo magnetic resonance spectroscopy.An illustrated comparison of processing methods for MR phase imaging and QSM: combining array coil signals and phase unwrappingChallenges and opportunities for brainstem neuroimaging with ultrahigh field MRI.Tailored spiral in-out spectral-spatial water suppression pulses for magnetic resonance spectroscopic imaging.Lipid suppression via double inversion recovery with symmetric frequency sweep for robust 2D-GRAPPA-accelerated MRSI of the brain at 7 TSimulating the Effect of Spectroscopic MRI as a Metric for Radiation Therapy Planning in Patients with Glioblastoma.Pushing the limits of ultra-high resolution human brain imaging with SMS-EPI demonstrated for columnar level fMRI.The public multi-coil information (PUMCIN) policy.Gradient and shim technologies for ultra high field MRI.Multiparametric imaging with heterogeneous radiofrequency fields.High slew-rate head-only gradient for improving distortion in echo planar imaging: Preliminary experience.Open Source 3D Multipurpose Measurement System with Submillimetre Fidelity and First Application in Magnetic Resonance.In vivo B0 field shimming methods for MRI at 7T.Adaptive integrated parallel reception, excitation, and shimming (iPRES-A) with microelectromechanical systems switches.Interleaved 31 P MRS imaging of human frontal and occipital lobes using dual RF coils in combination with single-channel transmitter-receiver and dynamic B0 shimming.Gradient-echo EPI using a high-degree shim insert coil at 7 T: Implications for BOLD fMRI.Imaging at ultrahigh magnetic fields: History, challenges, and solutions.Integrated parallel reception, excitation, and shimming (iPRES) with multiple shim loops per radio-frequency coil element for improved B0 shimming.A 24-channel shim array for the human spinal cord: Design, evaluation, and application.Magnetic Resonance Imaging technology-bridging the gap between noninvasive human imaging and optical microscopy
P2860
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P2860
A 32-channel combined RF and B0 shim array for 3T brain imaging
description
2015 nî lūn-bûn
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2015 թուականի Փետրուարին հրատարակուած գիտական յօդուած
@hyw
2015 թվականի փետրվարին հրատարակված գիտական հոդված
@hy
2015年の論文
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2015年論文
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2015年論文
@zh-hant
2015年論文
@zh-hk
2015年論文
@zh-mo
2015年論文
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2015年论文
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name
A 32-channel combined RF and B0 shim array for 3T brain imaging
@ast
A 32-channel combined RF and B0 shim array for 3T brain imaging
@en
A 32-channel combined RF andB0shim array for 3T brain imaging
@nl
type
label
A 32-channel combined RF and B0 shim array for 3T brain imaging
@ast
A 32-channel combined RF and B0 shim array for 3T brain imaging
@en
A 32-channel combined RF andB0shim array for 3T brain imaging
@nl
prefLabel
A 32-channel combined RF and B0 shim array for 3T brain imaging
@ast
A 32-channel combined RF and B0 shim array for 3T brain imaging
@en
A 32-channel combined RF andB0shim array for 3T brain imaging
@nl
P2093
P2860
P3181
P356
P1476
A 32-channel combined RF and B0 shim array for 3T brain imaging
@en
P2093
Azma Mareyam
Boris Keil
Cristen LaPierre
Jason P Stockmann
Kawin Setsompop
Thomas Witzel
P2860
P304
P3181
P356
10.1002/MRM.25587
P577
2015-02-17T00:00:00Z