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1 conditions were analyzed by high resolution Fourier transform mass spectrometry.
2 h nanoliquid chromatography/linear iron trap-Fourier transform mass spectrometry.
3 rmations as characterized by high-resolution Fourier transform mass spectrometry.
4 respective intact ion abundances measured by Fourier transform mass spectrometry.
5 ic digestion were identified by electrospray-Fourier transform mass spectrometry.
6 tandem mass spectrometry and high-resolution Fourier transform mass spectrometry.
7 matrix-assisted laser desorption ionization Fourier transform mass spectrometry.
8 expressed ThiF/ThiS protein mixture by using Fourier transform mass spectrometry.
9 matrix-assisted laser desorption/ionization Fourier transform mass spectrometry.
10 herapy was analyzed by liquid chromatography-Fourier transform-mass spectrometry.
11 in G. flavum determined by high-resolution, Fourier-transform mass spectrometry.
12 of the human proteome using high-resolution Fourier-transform mass spectrometry.
13 uench and subsequent electrospray ionization-Fourier transform mass spectrometry analysis of the acyl
14 sitions of <1% abundance can be separated by Fourier transform mass spectrometry and dissociated into
15 sing high-resolution electrospray ionization Fourier transform mass spectrometry and revealed a speci
16 adjacent tissues (AT) using high-resolution Fourier-transform mass spectrometry and a novel algorith
17 quid chromatography, electrospray ionization Fourier transform mass spectrometry, and two-dimensional
18 ked peptides from digests were identified by Fourier transform mass spectrometry, beginning with a se
19 RNA substrates when electrospray ionization-Fourier transform mass spectrometry (ESI-FTMS) is employ
25 eep proteomic analysis using high-resolution Fourier transform mass spectrometry for both precursor a
26 Herein we report the first application of Fourier transform mass spectrometry for the analysis of
30 such as C3 vs SH4: (a) ultrahigh resolution Fourier transform mass spectrometry (FT-MS); (b) high-re
33 ve been studied in the gas phase, using both Fourier transform mass spectrometry (FTMS) and the flowi
37 laser desorption/ionization (AP MALDI) with Fourier transform mass spectrometry (FTMS) is described,
39 have employed electrospray ionization (ESI) Fourier transform mass spectrometry (FTMS) to assess the
40 uccessive polarity shifting, high-resolution Fourier transform mass spectrometry (FTMS), and fragment
41 reversed-phase liquid chromatography (SPLC), Fourier transform mass spectrometry (FTMS), data-indepen
48 ick detection of each active site peptide by Fourier transform mass spectrometry in the fully reconst
49 mass spectrometry and liquid chromatography-Fourier transform mass spectrometry indicated that the o
52 was also demonstrated using linear ion trap Fourier transform mass spectrometry (LTQ FT MS) with mas
54 matrix-assisted laser desorption ionization Fourier transform mass spectrometry (MALDI FTMS) for neu
55 matrix-assisted laser desorption/ionization Fourier transform mass spectrometry (MALDI-FT MS) is des
61 ccupancy and product output were explored by Fourier transform mass spectrometry using the norsolorin
62 Matrix-assisted laser desorption/ionization Fourier transform mass spectrometry was used to identify
63 tudy, high-resolution and high mass accuracy Fourier transform mass spectrometry was utilized to map,
65 assisted laser desorption/ionization (MALDI) Fourier transform mass spectrometry, where whole tissue
67 loem sap by matrix-assisted laser desorption-Fourier transform mass spectrometry, with verification b
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