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39 results on '"Muddiman, David"'

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1. Quantitative sampling by IR-MALDESI is not susceptible to tissue heterogeneity in a multi-organ model: Quantitative sampling by IR-MALDESI is not susceptible to tissue heterogeneity in a multi-organ model: Joignant et al.

2. Rigorous scientific inquiry guided by creativity, curiosity and support: One of the last Renaissance scientists of our time.

3. Optimizing neurotransmitter pathway detection by IR-MALDESI-MSI in mouse brain.

4. Comparative analysis of sucrose-embedding for whole-body zebrafish MSI by IR-MALDESI.

5. Development of an object-based image analysis tool for mass spectrometry imaging ion classification.

6. Understanding the electrospray ionization response factors of per- and poly-fluoroalkyl substances (PFAS).

7. Utilizing liquid chromatography, ion mobility spectrometry, and mass spectrometry to assess INLIGHT™ derivatized N-linked glycans in biological samples.

8. Three-dimensional (3D) imaging of lipids in skin tissues with infrared matrix-assisted laser desorption electrospray ionization (MALDESI) mass spectrometry.

9. Lipidomic profiling of single mammalian cells by infrared matrix-assisted laser desorption electrospray ionization (IR-MALDESI).

10. Enhanced protocol for quantitative N-linked glycomics analysis using Individuality Normalization when Labeling with Isotopic Glycan Hydrazide Tags (INLIGHT)™.

11. Analysis of neurotransmitters in rat placenta exposed to flame retardants using IR-MALDESI mass spectrometry imaging.

12. Investigating host-pathogen meta-metabolic interactions of Magnaporthe oryzae infected barley using infrared matrix-assisted laser desorption electrospray ionization mass spectrometry.

13. Systematic evaluation of repeatability of IR-MALDESI-MS and normalization strategies for correcting the analytical variation and improving image quality.

14. IR-MALDESI mass spectrometry imaging of underivatized neurotransmitters in brain tissue of rats exposed to tetrabromobisphenol A.

15. Demonstration of hydrazide tagging for O-glycans and a central composite design of experiments optimization using the INLIGHT™ reagent.

16. IR-MALDESI method optimization based on time-resolved measurement of ion yields.

17. Direct analysis of terpenes from biological buffer systems using SESI and IR-MALDESI.

18. N-linked glycosite profiling and use of Skyline as a platform for characterization and relative quantification of glycans in differentiating xylem of Populus trichocarpa.

19. TransOmic analysis of forebrain sections in Sp2 conditional knockout embryonic mice using IR-MALDESI imaging of lipids and LC-MS/MS label-free proteomics.

20. In-depth LC-MS/MS analysis of the chicken ovarian cancer proteome reveals conserved and novel differentially regulated proteins in humans.

21. Cellular-level mass spectrometry imaging using infrared matrix-assisted laser desorption electrospray ionization (IR-MALDESI) by oversampling.

22. Quantitative mass spectrometry imaging of emtricitabine in cervical tissue model using infrared matrix-assisted laser desorption electrospray ionization.

23. Analysis of trace fibers by IR-MALDESI imaging coupled with high resolving power MS.

24. Absolute quantification of free glutathione and cysteine in aquatic insects using isotope dilution and selected reaction monitoring.

25. Recent advances in glycomics, glycoproteomics and allied topics.

26. Measuring the intra-individual variability of the plasma proteome in the chicken model of spontaneous ovarian adenocarcinoma.

27. Part II: defining and quantifying individual and co-cultured intracellular proteomes of two thermophilic microorganisms by GeLC-MS2 and spectral counting.

28. Part I: characterization of the extracellular proteome of the extreme thermophile Caldicellulosiruptor saccharolyticus by GeLC-MS2.

29. Part I: characterization of the extracellular proteome of the extreme thermophile Caldicellulosiruptor saccharolyticus by GeLC-MS2.

30. The effects of abundant plasma protein depletion on global glycan profiling using NanoLC FT-ICR mass spectrometry.

31. Untitled.

33. High-resolution mass spectrometry.

35. Erratum to: Part II: defining and quantifying individual and co-cultured intracellular proteomes of two thermophilic microorganisms by GeLC-MS and spectral counting.

36. Erratum to: Measuring the intra-individual variability of the plasma proteome in the chicken model of spontaneous ovarian adenocarcinoma.

37. Erratum to: Part I: characterization of the extracellular proteome of the extreme thermophile Caldicellulosiruptor saccharolyticus by GeLC-MS.

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