Imaging mass spectrometry allows for the direct investigation of tissue samples to identify specific biological compounds and determine their spatial distributions. Desorption electrospray ionization (DESI) mass spectrometry has been used for the imaging and analysis of rat spinal cord cross sections. Glycerophospholipids and sphingolipids, as well as fatty acids, were detected in both the negative and positive ion modes and identified through tandem mass spectrometry (MS/MS) product ion scans using collision-induced dissociation and accurate mass measurements. Differences in the relative abundances of lipids and free fatty acids were present between white and gray matter areas in both the negative and positive ion modes. DESI-MS images of ...
Mass spectrometric imaging (MSI) has emerged as a powerful technique to obtain spatial arrangement o...
Imaging mass spectrometry (IMS) allows the investigation of both identity and localization of the mo...
We have achieved enhanced lipid imaging to a ∼10 μm spatial resolution using negative ion mode matri...
Imaging mass spectrometry allows for the direct investigation of tissue samples to identify specific...
This work illustrates reactive desorption electrospray ionization mass spectrometry (DESI-MS) with a...
Lipids are crucial components of our bodies, not only as the building component of the cell membrane...
Lipids are crucial components of our bodies, not only as the building component of the cell membrane...
Lipids are crucial components of our bodies, not only as the building component of the cell membrane...
Desorption electrospray ionization (DESI) mass spectrometry was evaluated for the characterization o...
Desorption electrospray ionization (DESI), a relatively new ambient ionization technique used in mas...
Lipids are crucial components of our bodies, not only as the building component of the cell membrane...
Further development of the ambient mass spectrometry ionization method desorption electrospray ioniz...
Desorption electrospray ionisation (DESI) mass spectrometry images usually contain a large amount of...
Assignments of the ions to particular metabolites and lipids in the brain samples were facilitated b...
Desorption electrospray ionization (DESI) is an ambient ionization technique used for mass spectrome...
Mass spectrometric imaging (MSI) has emerged as a powerful technique to obtain spatial arrangement o...
Imaging mass spectrometry (IMS) allows the investigation of both identity and localization of the mo...
We have achieved enhanced lipid imaging to a ∼10 μm spatial resolution using negative ion mode matri...
Imaging mass spectrometry allows for the direct investigation of tissue samples to identify specific...
This work illustrates reactive desorption electrospray ionization mass spectrometry (DESI-MS) with a...
Lipids are crucial components of our bodies, not only as the building component of the cell membrane...
Lipids are crucial components of our bodies, not only as the building component of the cell membrane...
Lipids are crucial components of our bodies, not only as the building component of the cell membrane...
Desorption electrospray ionization (DESI) mass spectrometry was evaluated for the characterization o...
Desorption electrospray ionization (DESI), a relatively new ambient ionization technique used in mas...
Lipids are crucial components of our bodies, not only as the building component of the cell membrane...
Further development of the ambient mass spectrometry ionization method desorption electrospray ioniz...
Desorption electrospray ionisation (DESI) mass spectrometry images usually contain a large amount of...
Assignments of the ions to particular metabolites and lipids in the brain samples were facilitated b...
Desorption electrospray ionization (DESI) is an ambient ionization technique used for mass spectrome...
Mass spectrometric imaging (MSI) has emerged as a powerful technique to obtain spatial arrangement o...
Imaging mass spectrometry (IMS) allows the investigation of both identity and localization of the mo...
We have achieved enhanced lipid imaging to a ∼10 μm spatial resolution using negative ion mode matri...