Relaxation times of 31P-metabolites in human calf muscle at 3 T.
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Comparing localized and nonlocalized dynamic 31P magnetic resonance spectroscopy in exercising muscle at 7 THuman cardiac 31P magnetic resonance spectroscopy at 7 Tesla.Direct noninvasive quantification of lactate and high energy phosphates simultaneously in exercising human skeletal muscle by localized magnetic resonance spectroscopy.Triple repetition time saturation transfer (TRiST) 31P spectroscopy for measuring human creatine kinase reaction kineticsExchange kinetics by inversion transfer: integrated analysis of the phosphorus metabolite kinetic exchanges in resting human skeletal muscle at 7 TQuantitative cardiac 31P spectroscopy at 3 Tesla using adiabatic pulses.Windows on the human body--in vivo high-field magnetic resonance research and applications in medicine and psychology.Semi-LASER localized dynamic 31P magnetic resonance spectroscopy in exercising muscle at ultra-high magnetic field.Two repetition time saturation transfer (TwiST) with spill-over correction to measure creatine kinase reaction rates in human heartsTest-retest analysis of multiple 31 P magnetization exchange pathways using asymmetric adiabatic inversion.Spectrally selective 3D TSE imaging of phosphocreatine in the human calf muscle at 3 T3D-mapping of phosphocreatine concentration in the human calf muscle at 7 T: comparison to 3 TModular MR-compatible lower leg exercise device for whole-body scanners.Dynamic interleaved 1H/31P STEAM MRS at 3 Tesla using a pneumatic force-controlled plantar flexion exercise rig.Effects of GH on body composition and cardiovascular risk markers in young men with abdominal obesityQuantification of human high-energy phosphate metabolite concentrations at 3 T with partial volume and sensitivity corrections.Dynamic phosphocreatine imaging with unlocalized pH assessment of the human lower leg muscle following exercise at 3T.Ultra-high-field magnetic resonance: Why and when?Impaired insulin stimulation of muscular ATP production in patients with type 1 diabetes.Noninvasive monitoring of training induced muscle adaptation with 31P-MRS: fibre type shifts correlate with metabolic changes.Comparison of (31)P saturation and inversion magnetization transfer in human liver and skeletal muscle using a clinical MR system and surface coils.
P2860
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P2860
Relaxation times of 31P-metabolites in human calf muscle at 3 T.
description
2003 nî lūn-bûn
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2003年の論文
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2003年学术文章
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2003年学术文章
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2003年学术文章
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2003年学术文章
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2003年学术文章
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2003年學術文章
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name
Relaxation times of 31P-metabolites in human calf muscle at 3 T.
@en
Relaxation times of 31P-metabolites in human calf muscle at 3 T.
@nl
type
label
Relaxation times of 31P-metabolites in human calf muscle at 3 T.
@en
Relaxation times of 31P-metabolites in human calf muscle at 3 T.
@nl
prefLabel
Relaxation times of 31P-metabolites in human calf muscle at 3 T.
@en
Relaxation times of 31P-metabolites in human calf muscle at 3 T.
@nl
P356
P1476
Relaxation times of 31P-metabolites in human calf muscle at 3 T.
@en
P2093
Martin Krssák
P304
P356
10.1002/MRM.10426
P577
2003-04-01T00:00:00Z