Quantitative T(1rho) and adiabatic Carr-Purcell T2 magnetic resonance imaging of human occipital lobe at 4 T.
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Parenchymal spin-lock fMRI signals associated with cortical spreading depression.Capturing fast relaxing spins with SWIFT adiabatic rotating frame spin-lattice relaxation (T1ρ) mappingQuantitative rotating frame relaxometry methods in MRI.Water spin dynamics during apoptotic cell death in glioma gene therapy probed by T1rho and T2rho.Quantitative assessment of water pools by T 1 rho and T 2 rho MRI in acute cerebral ischemia of the rat.Change of the cerebrospinal fluid volume during brain activation investigated by T(1rho)-weighted fMRICombined off-resonance imaging and T2 relaxation in the rotating frame for positive contrast MR imaging of infection in a murine burn model.Spin-locked balanced steady-state free-precession (slSSFP)The future of ultra-high field MRI and fMRI for study of the human brain.Micro-compartment specific T2* relaxation in the brain.Relaxation dispersion in MRI induced by fictitious magnetic fields.Multiparametric MRI assessment of human articular cartilage degeneration: Correlation with quantitative histology and mechanical properties.Susceptibility induced gray-white matter MRI contrast in the human brain.MRI contrast from relaxation along a fictitious field (RAFF).Characterization of non-hemodynamic functional signal measured by spin-lock fMRIThe Importance of k-Space Trajectory on Off-Resonance Artifact in Segmented Echo-Planar Imaging.Errors in quantitative T1rho imaging and the correction methodsArtifacts in T1 rho-weighted imaging: compensation for B(1) and B(0) field imperfections.T1rho-prepared balanced gradient echo for rapid 3D T1rho MRI.Effects of spin-lock field direction on the quantitative measurement of spin-lattice relaxation time constant in the rotating frame (T1ρ) in a clinical MRI system.Correlating tissue outcome with quantitative multiparametric MRI of acute cerebral ischemia in rats.Glucose metabolism-weighted imaging with chemical exchange-sensitive MRI of 2-deoxyglucose (2DG) in brain: Sensitivity and biological sources.Biologically aggressive regions within glioblastoma identified by spin-lock contrast T1 relaxation in the rotating frame (T1ρ) MRI.
P2860
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P2860
Quantitative T(1rho) and adiabatic Carr-Purcell T2 magnetic resonance imaging of human occipital lobe at 4 T.
description
2005 nî lūn-bûn
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2005年の論文
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2005年学术文章
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2005年学术文章
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2005年学术文章
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2005年学术文章
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2005年学术文章
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2005年學術文章
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name
Quantitative T
@nl
Quantitative T(1rho) and adiab ...... f human occipital lobe at 4 T.
@en
type
label
Quantitative T
@nl
Quantitative T(1rho) and adiab ...... f human occipital lobe at 4 T.
@en
prefLabel
Quantitative T
@nl
Quantitative T(1rho) and adiab ...... f human occipital lobe at 4 T.
@en
P2093
P356
P1476
Quantitative T(1rho) and adiab ...... f human occipital lobe at 4 T.
@en
P2093
Heidi I Gröhn
Michael Garwood
Olli H J Gröhn
Risto A Kauppinen
Shalom Michaeli
P2860
P356
10.1002/MRM.20536
P577
2005-07-01T00:00:00Z