Magnetic resonance spectroscopic imaging (MRSI) is a promising technique for mapping the spatial distribution of multiple metabolites in the human brain. These metabolite maps can be used as a diagnostic tool to gain insight into several biochemical processes and diseases in the brain. In comparison to lower field strengths, MRSI at ultra-high field strengths benefits from a higher signal to noise ratio (SNR) as well as higher chemical shift dispersion, and hence spectral resolution. This study combines the benefits of an ultra-high field magnet with the advantages of an ultra-short TE and TR single-slice FID-MRSI sequence (such as negligible J-evolution and loss of SNR due to T2 relaxation effects) and presents the first metabolite maps ac...
In this work, we present high resolution whole-brain metabolite maps acquired at 9.4T for the first ...
In this work, we present high resolution whole-brain metabolite maps acquired at 9.4T for the first ...
Whole-brain metabolite mapping with volumetric coverage is a valuable tool for the evaluation of met...
Magnetic resonance spectroscopic imaging (MRSI) is a promising technique for mapping the spatial dis...
1H MRSI is a powerful technique for mapping the spatial distribution of metabolites in the human bod...
1H MRSI is a powerful technique for mapping the spatial distribution of metabolites in the human bod...
1H MRSI is a powerful technique for mapping the spatial distribution of metabolites in the human bod...
MRSI can benefit greatly from ultra-high field strengths. Given the higher SNR and higher chemical s...
MRSI can benefit greatly from ultra-high field strengths. Given the higher SNR and higher chemical s...
The ability to determine distributions of a large number of metabolites in the human brain with high...
In vivo magnetic resonance spectroscopy has evolved during the last 25 years in terms of localizatio...
Magnetic Resonance Spectroscopic Imaging (MRSI) of the brain enables insights into the metabolic cha...
Magnetic resonance spectroscopic imaging (MRSI) is a non-invasive imaging modality that enables obse...
AbstractLong echo time (TE) MR spectroscopy (MRS) sequences are sensitive only to metabolites of low...
Low sensitivity MR techniques such as magnetic resonance spectroscopic imaging (MRSI) greatly benefi...
In this work, we present high resolution whole-brain metabolite maps acquired at 9.4T for the first ...
In this work, we present high resolution whole-brain metabolite maps acquired at 9.4T for the first ...
Whole-brain metabolite mapping with volumetric coverage is a valuable tool for the evaluation of met...
Magnetic resonance spectroscopic imaging (MRSI) is a promising technique for mapping the spatial dis...
1H MRSI is a powerful technique for mapping the spatial distribution of metabolites in the human bod...
1H MRSI is a powerful technique for mapping the spatial distribution of metabolites in the human bod...
1H MRSI is a powerful technique for mapping the spatial distribution of metabolites in the human bod...
MRSI can benefit greatly from ultra-high field strengths. Given the higher SNR and higher chemical s...
MRSI can benefit greatly from ultra-high field strengths. Given the higher SNR and higher chemical s...
The ability to determine distributions of a large number of metabolites in the human brain with high...
In vivo magnetic resonance spectroscopy has evolved during the last 25 years in terms of localizatio...
Magnetic Resonance Spectroscopic Imaging (MRSI) of the brain enables insights into the metabolic cha...
Magnetic resonance spectroscopic imaging (MRSI) is a non-invasive imaging modality that enables obse...
AbstractLong echo time (TE) MR spectroscopy (MRS) sequences are sensitive only to metabolites of low...
Low sensitivity MR techniques such as magnetic resonance spectroscopic imaging (MRSI) greatly benefi...
In this work, we present high resolution whole-brain metabolite maps acquired at 9.4T for the first ...
In this work, we present high resolution whole-brain metabolite maps acquired at 9.4T for the first ...
Whole-brain metabolite mapping with volumetric coverage is a valuable tool for the evaluation of met...