Protein mass spectrometry imaging (MSI) with electrospray-based ambient ionization techniques, such as nanospray desorption electrospray ionization (nano-DESI), generates data sets in which each pixel corresponds to a mass spectrum populated by peaks corresponding to multiply charged protein ions. Importantly, the signal associated with each protein is split among multiple charge states. These peaks can be transformed into the mass domain by spectral deconvolution. When proteins are imaged under native/non-denaturing conditions to retain non-covalent interactions, deconvolution is particularly valuable in helping interpret the data. To improve the acquisition speed, signal-to-noise ratio, and sensitivity, native MSI is usually performed usi...
Analysis of large biomolecules including proteins has proven challenging using ambient ionization ma...
Mass spectrometry imaging (MSI) is an advanced analytical technique that renders spatially defined ...
Mass spectrometry imaging (MSI) provides information on the spatial distribution of molecules within...
Protein mass spectrometry imaging (MSI) with electrospray-based ambient ionization techniques, such ...
Protein mass spectrometry imaging (MSI) with electrospray-based ambient ionization techniques, such ...
Mass spectrometry (MS) has played a vital role across a broad range of fields and applications in pr...
Deconvolution from intact protein mass-to-charge spectra to mass spectra is essential to generate in...
Previously, we have demonstrated native mass spectrometry imaging (native MSI) in which the spatial ...
Untargeted label-free interrogation of proteins in their functional form directly from their physiol...
Electrospray ionization mass spectrometry (ESI-MS) is a ubiquitously used analytical method applied ...
Charge deconvolution infers the mass from mass over charge (m/z) measurements in electrospray ioniza...
MALDI imaging and profiling mass spectrometry of proteins typically leads to the detection of a larg...
Charge deconvolution infers the mass from mass over charge (<i>m</i>/<i>z</i>) measurements in elect...
In this thesis, method development for improved analyte identification and throughput in mass spectr...
Analysis of large biomolecules including proteins has proven challenging using ambient ionization ma...
Mass spectrometry imaging (MSI) is an advanced analytical technique that renders spatially defined ...
Mass spectrometry imaging (MSI) provides information on the spatial distribution of molecules within...
Protein mass spectrometry imaging (MSI) with electrospray-based ambient ionization techniques, such ...
Protein mass spectrometry imaging (MSI) with electrospray-based ambient ionization techniques, such ...
Mass spectrometry (MS) has played a vital role across a broad range of fields and applications in pr...
Deconvolution from intact protein mass-to-charge spectra to mass spectra is essential to generate in...
Previously, we have demonstrated native mass spectrometry imaging (native MSI) in which the spatial ...
Untargeted label-free interrogation of proteins in their functional form directly from their physiol...
Electrospray ionization mass spectrometry (ESI-MS) is a ubiquitously used analytical method applied ...
Charge deconvolution infers the mass from mass over charge (m/z) measurements in electrospray ioniza...
MALDI imaging and profiling mass spectrometry of proteins typically leads to the detection of a larg...
Charge deconvolution infers the mass from mass over charge (<i>m</i>/<i>z</i>) measurements in elect...
In this thesis, method development for improved analyte identification and throughput in mass spectr...
Analysis of large biomolecules including proteins has proven challenging using ambient ionization ma...
Mass spectrometry imaging (MSI) is an advanced analytical technique that renders spatially defined ...
Mass spectrometry imaging (MSI) provides information on the spatial distribution of molecules within...