Molecular and macromolecular structure analysis by high resolution and accurate mass spectrometry (MS) is indispensable for a number of fundamental and applied research areas, including health and energy domains. Comprehensive structure analysis of molecules and macromolecules present in the extremely complex samples and performed under time-constrained experimental conditions demands a substantial increase in the acquisition speed of high resolution MS data. We demonstrate here that signal processing based on the filter diagonalization method (FDM) provides the required resolution for shorter experimental transient signals in ion cyclotron resonance (ICR) MS compared to the Fourier transform (FT) processing. We thus present the development...
The most widely used modern mass spectrometers face severe performance limitations with molecules la...
Analysis of proteins and complexes under native mass spectrometric (MS) and solution conditions was ...
A new non-Fourier data processing algorithm, the filter diago-nalization method (FDM), is presented ...
The filter diagonalization method (FDM) is a recently developed computational technique capable of e...
To advance Fourier transform mass spectrometry (FTMS)-based molecular structure analysis, correspond...
Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometry has become increasingly signifi...
Mass spectrometry (MS) has become a crucial technique for the analysis of protein complexes. Native ...
The high mass accuracy and resolution of Fourier transform (FT)-ion cyclotron resonance (ICR) mass s...
This article provides an introduction to Fourier transform-based mass spectrometry. The key performa...
High-resolution mass spectrometry (MS) is indispensable for the molecular-level analysis of biologic...
The development of Fourier transform ion cyclotron resonance (FT-ICR) as an analytical technique has...
The spontaneous loss of coherence catastrophe (SLCC) is a frequently observed, yet poorly studied, s...
Native mass spectrometry (MS) allows the interrogation of structural aspects of macromolecules in th...
With the emergence of top-down proteomics, the ability to achieve high mass measurement accuracy on ...
In this thesis, methods for studying different aspects of proteomics were developed with Fourier Tra...
The most widely used modern mass spectrometers face severe performance limitations with molecules la...
Analysis of proteins and complexes under native mass spectrometric (MS) and solution conditions was ...
A new non-Fourier data processing algorithm, the filter diago-nalization method (FDM), is presented ...
The filter diagonalization method (FDM) is a recently developed computational technique capable of e...
To advance Fourier transform mass spectrometry (FTMS)-based molecular structure analysis, correspond...
Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometry has become increasingly signifi...
Mass spectrometry (MS) has become a crucial technique for the analysis of protein complexes. Native ...
The high mass accuracy and resolution of Fourier transform (FT)-ion cyclotron resonance (ICR) mass s...
This article provides an introduction to Fourier transform-based mass spectrometry. The key performa...
High-resolution mass spectrometry (MS) is indispensable for the molecular-level analysis of biologic...
The development of Fourier transform ion cyclotron resonance (FT-ICR) as an analytical technique has...
The spontaneous loss of coherence catastrophe (SLCC) is a frequently observed, yet poorly studied, s...
Native mass spectrometry (MS) allows the interrogation of structural aspects of macromolecules in th...
With the emergence of top-down proteomics, the ability to achieve high mass measurement accuracy on ...
In this thesis, methods for studying different aspects of proteomics were developed with Fourier Tra...
The most widely used modern mass spectrometers face severe performance limitations with molecules la...
Analysis of proteins and complexes under native mass spectrometric (MS) and solution conditions was ...
A new non-Fourier data processing algorithm, the filter diago-nalization method (FDM), is presented ...