This study analyzes the effects of retrospective lipid suppression, a simulated macromolecular prior knowledge and different spline baseline stiffness values on 9.4T multi-slice proton FID-MRSI data spanning the whole cerebrum of human brain and the reproducibility of respective metabolite ratio to total creatine (/tCr) maps for 10 brain metabolites. Methods Measurements were performed twice on 5 volunteers using a short TR and TE FID MRSI 2D sequence at 9.4T. The effects of retrospective lipid L2-regularization, macromolecular spectrum and different LCModel baseline flexibilities on SNR, FWHM, fitting residual, Cramér-Rao lower bound, and metabolite ratio maps were investigated. Intra-subject, inter-session coefficient of variation and th...
Macromolecular signals are crucial constituents of short echo-time 1 H MR spectra with potential cli...
Purpose/Introduction: At ultra-short TE and TR, macromolecule quantification becomes extremely impor...
ObjectA novel method of estimating metabolite T1 relaxation times using MR spectroscopic imaging (MR...
Purpose: This study analyzes the effects of retrospective lipid suppression, a simulated macromolecu...
Introduction: Magnetic resonance spectroscopic imaging (MRSI) has the potential to add a layer of un...
Purpose In this study, the influence of experimentally measured macromolecules and spline baseline o...
Magnetic resonance spectroscopic imaging (MRSI) is a non-invasive imaging modality that enables obse...
Purpose/Introduction: One of the major goals in order to make MRSpectroscopy relevant for clinical p...
AbstractLong echo time (TE) MR spectroscopy (MRS) sequences are sensitive only to metabolites of low...
Item does not contain fulltextThe purpose of this work was to harmonize data acquisition and post-pr...
The purpose of this work was to harmonize data acquisition and post-processing of single voxel proto...
This prospective study aimed to evaluate the variation in magnetic resonance spectroscopic imaging (...
Short TE MRS and very short TR (TR < 300) MRSI are popular methods to capture snapshots of the neuro...
Purpose: Epitomizing the advantages of ultra short echo time and no chemical shift displacement erro...
In vivo proton magnetic resonance spectroscopy (1H MRS) is the only method available to measure smal...
Macromolecular signals are crucial constituents of short echo-time 1 H MR spectra with potential cli...
Purpose/Introduction: At ultra-short TE and TR, macromolecule quantification becomes extremely impor...
ObjectA novel method of estimating metabolite T1 relaxation times using MR spectroscopic imaging (MR...
Purpose: This study analyzes the effects of retrospective lipid suppression, a simulated macromolecu...
Introduction: Magnetic resonance spectroscopic imaging (MRSI) has the potential to add a layer of un...
Purpose In this study, the influence of experimentally measured macromolecules and spline baseline o...
Magnetic resonance spectroscopic imaging (MRSI) is a non-invasive imaging modality that enables obse...
Purpose/Introduction: One of the major goals in order to make MRSpectroscopy relevant for clinical p...
AbstractLong echo time (TE) MR spectroscopy (MRS) sequences are sensitive only to metabolites of low...
Item does not contain fulltextThe purpose of this work was to harmonize data acquisition and post-pr...
The purpose of this work was to harmonize data acquisition and post-processing of single voxel proto...
This prospective study aimed to evaluate the variation in magnetic resonance spectroscopic imaging (...
Short TE MRS and very short TR (TR < 300) MRSI are popular methods to capture snapshots of the neuro...
Purpose: Epitomizing the advantages of ultra short echo time and no chemical shift displacement erro...
In vivo proton magnetic resonance spectroscopy (1H MRS) is the only method available to measure smal...
Macromolecular signals are crucial constituents of short echo-time 1 H MR spectra with potential cli...
Purpose/Introduction: At ultra-short TE and TR, macromolecule quantification becomes extremely impor...
ObjectA novel method of estimating metabolite T1 relaxation times using MR spectroscopic imaging (MR...