Analysis of metabolites in biofluids using nuclear magnetic resonance often requires the suppression of obscuring signals arising from water and macromolecules. This paper analyses the limitations of the pulse sequence most commonly used to achieve such suppression (presat-CPMG) and proposes new pulse sequences that do not share those limitations. The utility of these improved pulse sequences is demonstrated in a metabolomic study of multiple sclerosis (MS) patients
Optimizing NMR experimental parameters for high-throughput metabolic phenotyping requires careful ex...
A binomial-like block based multiple suppression NMR pulse sequence, termed MULTI-GATE-FSB, that is ...
Metabolomics is the measurement and analysis of metabolite perturbations in a biological system caus...
Analysis of metabolites in biofluids using nuclear magnetic resonance often requires the suppression...
The investigation of drug delivery and metabolism requires the analysis of molecules in complicated ...
The last four decades have seen a continuous evolution in suppression techniques that attempt to mee...
The suppression of the abundant water signal has been traditionally employed to decrease the dynamic...
Purpose/Introduction: Magnetic resonance spectroscopy (MRS) is a valu- able tool for differential di...
Magnetic resonance spectroscopy enables insight into the chemical composition of spinal cord tissue....
Nuclear Magnetic Resonance (NMR) spectroscopy is a powerful analytical method for the identification...
Metabolomics is the discipline where endogenous and exogenous metabolites are assessed, identified a...
The field of metabolomics focuses on the study of biochemical changes occurring in living systems an...
International audienceNMR-based metabolomic studies commonly involve the use of T2-filter pulse sequ...
We describe the design and application of robust, general-purpose water signal suppression pulse seq...
Optimizing NMR experimental parameters for high-throughput metabolic phenotyping requires careful ex...
A binomial-like block based multiple suppression NMR pulse sequence, termed MULTI-GATE-FSB, that is ...
Metabolomics is the measurement and analysis of metabolite perturbations in a biological system caus...
Analysis of metabolites in biofluids using nuclear magnetic resonance often requires the suppression...
The investigation of drug delivery and metabolism requires the analysis of molecules in complicated ...
The last four decades have seen a continuous evolution in suppression techniques that attempt to mee...
The suppression of the abundant water signal has been traditionally employed to decrease the dynamic...
Purpose/Introduction: Magnetic resonance spectroscopy (MRS) is a valu- able tool for differential di...
Magnetic resonance spectroscopy enables insight into the chemical composition of spinal cord tissue....
Nuclear Magnetic Resonance (NMR) spectroscopy is a powerful analytical method for the identification...
Metabolomics is the discipline where endogenous and exogenous metabolites are assessed, identified a...
The field of metabolomics focuses on the study of biochemical changes occurring in living systems an...
International audienceNMR-based metabolomic studies commonly involve the use of T2-filter pulse sequ...
We describe the design and application of robust, general-purpose water signal suppression pulse seq...
Optimizing NMR experimental parameters for high-throughput metabolic phenotyping requires careful ex...
A binomial-like block based multiple suppression NMR pulse sequence, termed MULTI-GATE-FSB, that is ...
Metabolomics is the measurement and analysis of metabolite perturbations in a biological system caus...