Purpose: Macromolecular peaks underlying metabolite spectra influence the quantification of metabolites. Therefore, it is important to understand the extent of contribution from macromolecules (MMs) in metabolite quantification. However, to model MMs more accurately in spectral fitting, differences in T1 relaxation times among individual MM peaks must be considered. Characterization of T1 -relaxation times for all individual MM peaks using a single inversion recovery technique is difficult due to eventual contributions from metabolites. On the contrary, a double inversion recovery (DIR) technique provided flexibility to acquire MM spectra spanning a range of longitudinal magnetizations with minimal metabolite influence. Thus, a novel method...
From the literature it is clear that information on the macromolecular baseline can contain valuable...
Purpose Reliable detection and fitting of macromolecules (MM) are crucial for accurate quantificatio...
Longitudinal relaxation times for 11 human brain metabolites are reported for GM and WM rich voxels ...
In order to determine the T1 relaxation times of the metabolites in human brain including the ones t...
Purpose: Ultrahigh field MRS has improved characterization of the neurochemical profile. To compare ...
PURPOSE: Relaxation times can contribute to spectral assignment. In this study, effective T2 relaxat...
Purpose/Introduction: Macromolecular resonances (MM) arise mainly from cytosolic proteins overlappin...
Longitudinal relaxation times of 13 Macromolecular (MM) resonances are reported for a gray matter ri...
Macromolecular signals are crucial constituents of short echo-time 1 H MR spectra with potential cli...
Purpose Macromolecular resonances (MM) arise mainly from cytosolic proteins and overlap with metabol...
Purpose/Introduction: For the absolute quantification1 of metabolites, appropriate T2 relaxation tim...
Accurate values of metabolite relaxation times are necessary for absolute quantification in magnetic...
ObjectA novel method of estimating metabolite T1 relaxation times using MR spectroscopic imaging (MR...
Previous studies have shown, that the inclusion of a macromolecular baseline in the basis set for fi...
Longitudinal relaxation (T1) contrast in MRI is important for studying brain morphology and is widel...
From the literature it is clear that information on the macromolecular baseline can contain valuable...
Purpose Reliable detection and fitting of macromolecules (MM) are crucial for accurate quantificatio...
Longitudinal relaxation times for 11 human brain metabolites are reported for GM and WM rich voxels ...
In order to determine the T1 relaxation times of the metabolites in human brain including the ones t...
Purpose: Ultrahigh field MRS has improved characterization of the neurochemical profile. To compare ...
PURPOSE: Relaxation times can contribute to spectral assignment. In this study, effective T2 relaxat...
Purpose/Introduction: Macromolecular resonances (MM) arise mainly from cytosolic proteins overlappin...
Longitudinal relaxation times of 13 Macromolecular (MM) resonances are reported for a gray matter ri...
Macromolecular signals are crucial constituents of short echo-time 1 H MR spectra with potential cli...
Purpose Macromolecular resonances (MM) arise mainly from cytosolic proteins and overlap with metabol...
Purpose/Introduction: For the absolute quantification1 of metabolites, appropriate T2 relaxation tim...
Accurate values of metabolite relaxation times are necessary for absolute quantification in magnetic...
ObjectA novel method of estimating metabolite T1 relaxation times using MR spectroscopic imaging (MR...
Previous studies have shown, that the inclusion of a macromolecular baseline in the basis set for fi...
Longitudinal relaxation (T1) contrast in MRI is important for studying brain morphology and is widel...
From the literature it is clear that information on the macromolecular baseline can contain valuable...
Purpose Reliable detection and fitting of macromolecules (MM) are crucial for accurate quantificatio...
Longitudinal relaxation times for 11 human brain metabolites are reported for GM and WM rich voxels ...