D
Dietrich A. Volmer
Researcher at Saarland University
Publications - 185
Citations - 6458
Dietrich A. Volmer is an academic researcher from Saarland University. The author has contributed to research in topics: Mass spectrometry & Electrospray ionization. The author has an hindex of 43, co-authored 170 publications receiving 5825 citations. Previous affiliations of Dietrich A. Volmer include University of Toronto & Food and Drug Administration.
Papers
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Journal ArticleDOI
Ion activation methods for tandem mass spectrometry.
Lekha Sleno,Dietrich A. Volmer +1 more
TL;DR: This tutorial presents the most common ion activation techniques employed in tandem mass spectrometry and individual methods are presented so as to facilitate the understanding of each mechanism of activation and their particular advantages and representative applications.
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Recent advances in sample preparation techniques to overcome difficulties encountered during quantitative analysis of small molecules from biofluids using LC-MS/MS
TL;DR: The most common problems encountered during sample preparation, ways to optimize established sample preparation techniques and important recent developments to reduce or eliminate major interferents from biofluids are described.
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Lipid imaging by mass spectrometry – a review
David Gode,Dietrich A. Volmer +1 more
TL;DR: This article gives a comprehensive overview of lipid imaging techniques and applications using established MALDI and SIMS methods but also other promising MSI techniques such as DESI.
Journal Article
Ion suppression : A major concern in mass spectrometry
TL;DR: Because there is no universal solution for the matrix effect, some of the viable options are discussed briefly in this tutorial, which alone or in combination can help regain the quality of LC-MS analysis for the particular matrix-analyte combination.
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Study of 4-Quinolone Antibiotics in Biological Samples by Short-Column Liquid Chromatography Coupled with Electrospray Ionization Tandem Mass Spectrometry
TL;DR: It is shown that LC/quasi-MS/MS/ MS/MS can significantly enhance structural information and, thus, the specificity of analysis for the investigated 4-quinolones.