Knowledge of T(1) relaxation times can be important for accurate relative and absolute quantification of brain metabolites, for sensitivity optimizations, for characterizing molecular dynamics, and for studying changes induced by various pathological conditions. (1)H T(1) relaxation times of a series of brain metabolites, including J-coupled ones, were determined using a progressive saturation (PS) technique that was validated with an adiabatic inversion-recovery (IR) method. The (1)H T(1) relaxation times of 16 functional groups of the neurochemical profile were measured at 14.1T and 9.4T. Overall, the T(1) relaxation times found at 14.1T were, within the experimental error, identical to those at 9.4T. The T(1)s of some coupled spin resona...
In order to determine the T1 relaxation times of the metabolites in human brain including the ones t...
Localized in vivo 1H NMR spectroscopy was performed with 2-ms echo time in the rat brain at 9.4 T. F...
Localized in vivo 1H NMR spectroscopy was performed with 2-ms echo time in the rat brain at 9.4 Tesl...
Knowledge of T(1) relaxation times can be important for accurate relative and absolute quantificatio...
Knowledge of T1 relaxation times can be important for accurate relative and absolute quantification ...
International audienceOBJECT: To determine the single spin-echo T2 relaxation times of uncoupled and...
OBJECT: To determine the single spin-echo T 2 relaxation times of uncoupled and J-coupled metabolite...
Accurate values of metabolite relaxation times are necessary for absolute quantification in magnetic...
Object: To determine the single spin-echo T 2 relaxation times of uncoupled and J-coupled metabolite...
PURPOSE: Relaxation times can contribute to spectral assignment. In this study, effective T2 relaxat...
Knowledge of proton T2 relaxation time of metabolites is essential for proper quantitation of metabo...
Purpose/Introduction: For the absolute quantification1 of metabolites, appropriate T2 relaxation tim...
Purpose: Ultrahigh field MRS has improved characterization of the neurochemical profile. To compare ...
Purpose: Macromolecular peaks underlying metabolite spectra influence the quantification of metaboli...
In vivo longitudinal relaxation times of N-acetyl compounds (NA), choline-containing substances (Cho...
In order to determine the T1 relaxation times of the metabolites in human brain including the ones t...
Localized in vivo 1H NMR spectroscopy was performed with 2-ms echo time in the rat brain at 9.4 T. F...
Localized in vivo 1H NMR spectroscopy was performed with 2-ms echo time in the rat brain at 9.4 Tesl...
Knowledge of T(1) relaxation times can be important for accurate relative and absolute quantificatio...
Knowledge of T1 relaxation times can be important for accurate relative and absolute quantification ...
International audienceOBJECT: To determine the single spin-echo T2 relaxation times of uncoupled and...
OBJECT: To determine the single spin-echo T 2 relaxation times of uncoupled and J-coupled metabolite...
Accurate values of metabolite relaxation times are necessary for absolute quantification in magnetic...
Object: To determine the single spin-echo T 2 relaxation times of uncoupled and J-coupled metabolite...
PURPOSE: Relaxation times can contribute to spectral assignment. In this study, effective T2 relaxat...
Knowledge of proton T2 relaxation time of metabolites is essential for proper quantitation of metabo...
Purpose/Introduction: For the absolute quantification1 of metabolites, appropriate T2 relaxation tim...
Purpose: Ultrahigh field MRS has improved characterization of the neurochemical profile. To compare ...
Purpose: Macromolecular peaks underlying metabolite spectra influence the quantification of metaboli...
In vivo longitudinal relaxation times of N-acetyl compounds (NA), choline-containing substances (Cho...
In order to determine the T1 relaxation times of the metabolites in human brain including the ones t...
Localized in vivo 1H NMR spectroscopy was performed with 2-ms echo time in the rat brain at 9.4 T. F...
Localized in vivo 1H NMR spectroscopy was performed with 2-ms echo time in the rat brain at 9.4 Tesl...