The availability of high resolution mass spectrometry in the study of atomic and molecular clusters opens up challenges for the interpretation of the data. In complex systems each resolved mass peak may contain contributions from multiple species because of the isotope structure of constituent elements and because a multitude of different types of clusters with different compositions are present. A computational procedure which can help to identify a specific cluster from this complex dataset and quantify its relative abundance would be extremely helpful to many who work in this field. Here some new software designed for this purpose, known as IsotopeFit, is described
Mass spectrometry is a technique to determine the molecular content of samples derived from human, a...
Albaum S, Hahne H, Otto A, et al. A guide through the computational analysis of isotope-labeled mass...
The isotopomer distributions of metabolites are invaluable pieces of information in the computation ...
The availability of high resolution mass spectrometry in the study of atomic and molecular clusters ...
AbstractThe availability of high resolution mass spectrometry in the study of atomic and molecular c...
Mass spectrometry is a key analytical platform for metabolomics. The precise quantification and iden...
This paper presents details of an expert system that infers elemental composition of fragment peaks ...
Automated interpretation of high-resolution mass spectra in a reliable and efficient manner represen...
Background The knowledge of metabolic pathways and fluxes is important to understand the adaptati...
<p>Ion cluster is a group of ions which belong together, all peaks have the same molecular compositi...
For high-resolution tandem mass spectra, the determination of monoisotopic masses of fragment ions p...
This paper presents a novel theoretical basis for accurately calculating the isotope cluster of poly...
High-throughput proteomics experiments typically generate large amounts of peptide fragmentation mas...
Three programs were assessed for their ability to predict mass spectral fragmentation patterns for a...
We present a method for determination of the isotopomer distributions of metabolites from the data g...
Mass spectrometry is a technique to determine the molecular content of samples derived from human, a...
Albaum S, Hahne H, Otto A, et al. A guide through the computational analysis of isotope-labeled mass...
The isotopomer distributions of metabolites are invaluable pieces of information in the computation ...
The availability of high resolution mass spectrometry in the study of atomic and molecular clusters ...
AbstractThe availability of high resolution mass spectrometry in the study of atomic and molecular c...
Mass spectrometry is a key analytical platform for metabolomics. The precise quantification and iden...
This paper presents details of an expert system that infers elemental composition of fragment peaks ...
Automated interpretation of high-resolution mass spectra in a reliable and efficient manner represen...
Background The knowledge of metabolic pathways and fluxes is important to understand the adaptati...
<p>Ion cluster is a group of ions which belong together, all peaks have the same molecular compositi...
For high-resolution tandem mass spectra, the determination of monoisotopic masses of fragment ions p...
This paper presents a novel theoretical basis for accurately calculating the isotope cluster of poly...
High-throughput proteomics experiments typically generate large amounts of peptide fragmentation mas...
Three programs were assessed for their ability to predict mass spectral fragmentation patterns for a...
We present a method for determination of the isotopomer distributions of metabolites from the data g...
Mass spectrometry is a technique to determine the molecular content of samples derived from human, a...
Albaum S, Hahne H, Otto A, et al. A guide through the computational analysis of isotope-labeled mass...
The isotopomer distributions of metabolites are invaluable pieces of information in the computation ...