A lot of time is spent by researchers in the identification of metabolites in NMR-based metabolomic studies. The usual metabolite identification starts employing public or commercial databases to match chemical shifts thought to belong to a given compound. Statistical total correlation spectroscopy (STOCSY), in use for more than a decade, speeds the process by finding statistical correlations among peaks, being able to create a better peak list as input for the database query. However, the (normally not automated) analysis becomes challenging due to the intrinsic issue of peak overlap, where correlations of more than one compound appear in the STOCSY trace. Here we present a fully automated methodology that analyzes all STOCSY traces at onc...
Along with Mass spectrometry data, metabolomics studies are commonly based on proton 1D 1H-NMR spect...
When applying statistical data analysis techniques to analytical chemical data, all variables must h...
Before reaching the end goal of interpreting any underlying biological processes, metabolomics data ...
The identification of metabolites in complex biological matrices is a challenging task in 1D 1H-NMR-...
Owing to its ability to capture a systemic and temporal metabolic description of an organism’s respo...
Identification of metabolites in large-scale <sup>1</sup> H NMR data from human biofluid...
Identification of metabolites in large-scale <sup>1</sup> H NMR data from human biofluid...
Motivation: Comparative metabolic profiling by nuclear magnetic resonance (NMR) is showing increasin...
Metabolite identification in non-targeted NMR-based metabolomics remains a challenge. While many pea...
Metabolite identification in non-targeted NMR-based metabolomics remains a challenge. While many pea...
The development of Statistical Total Correlation Spectroscopy (STOCSY), a representation of the auto...
Identification and quantification of metabolites are key to NMR-based metabolomics studies. However,...
Metabolomics is a technology which allows us to probe a wide array of interactions between metabolit...
Compared with the widely used 1H-NMR spectroscopy, two-dimensional NMR experiments provide more soph...
Compared with the widely used 1H-NMR spectroscopy, two-dimensional NMR experiments provide more soph...
Along with Mass spectrometry data, metabolomics studies are commonly based on proton 1D 1H-NMR spect...
When applying statistical data analysis techniques to analytical chemical data, all variables must h...
Before reaching the end goal of interpreting any underlying biological processes, metabolomics data ...
The identification of metabolites in complex biological matrices is a challenging task in 1D 1H-NMR-...
Owing to its ability to capture a systemic and temporal metabolic description of an organism’s respo...
Identification of metabolites in large-scale <sup>1</sup> H NMR data from human biofluid...
Identification of metabolites in large-scale <sup>1</sup> H NMR data from human biofluid...
Motivation: Comparative metabolic profiling by nuclear magnetic resonance (NMR) is showing increasin...
Metabolite identification in non-targeted NMR-based metabolomics remains a challenge. While many pea...
Metabolite identification in non-targeted NMR-based metabolomics remains a challenge. While many pea...
The development of Statistical Total Correlation Spectroscopy (STOCSY), a representation of the auto...
Identification and quantification of metabolites are key to NMR-based metabolomics studies. However,...
Metabolomics is a technology which allows us to probe a wide array of interactions between metabolit...
Compared with the widely used 1H-NMR spectroscopy, two-dimensional NMR experiments provide more soph...
Compared with the widely used 1H-NMR spectroscopy, two-dimensional NMR experiments provide more soph...
Along with Mass spectrometry data, metabolomics studies are commonly based on proton 1D 1H-NMR spect...
When applying statistical data analysis techniques to analytical chemical data, all variables must h...
Before reaching the end goal of interpreting any underlying biological processes, metabolomics data ...