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1  total lipid extracts into a high resolution tandem mass spectrometer.
2 emented on a quadrupole/time-of-flight (TOF) tandem mass spectrometer.
3 ction with an ion-pairing agent coupled to a tandem mass spectrometer.
4 a modified triple quadrupole/linear ion trap tandem mass spectrometer.
5  ion trap and an Orbitrap to create a hybrid tandem mass spectrometer.
6 ction experiments in a linear ion trap-based tandem mass spectrometer.
7 the method using a quadrupole time-of-flight tandem mass spectrometer.
8 modified protein using a quadrupole ion trap tandem mass spectrometer.
9 ime-of-flight/time-of-flight (MALDI-TOF/TOF) tandem mass spectrometer.
10 a selected reaction monitoring analysis in a tandem mass spectrometer.
11 onal liquid chromatography and analyzed by a tandem mass spectrometer.
12 try using a hybrid quadrupole-time-of-flight tandem mass spectrometer.
13 lyzed by collision-induced dissociation in a tandem mass spectrometer.
14 chromatography interfaced to an electrospray tandem mass spectrometer.
15  through a microelectrospray ion source to a tandem mass spectrometer.
16 ovalent protein complexes on an ion mobility tandem mass spectrometer.
17 eport the design and first applications of a tandem mass spectrometer (a quadrupole time-of-flight ma
18 upled with a photodiode-array detector and a tandem mass spectrometer, a novel series of endogenous m
19 zation (MALDI) time-of-flight/time-of-flight tandem mass spectrometer are described.
20                               Rapid scanning tandem mass spectrometers are capable of quantitative an
21 e source region and in the collision cell of tandem mass spectrometers are sequentially combined to d
22 ge-tagged carbene was generated in situ in a tandem mass spectrometer by decarboxylation of oxo[4-(tr
23                       A fast-pyrolysis probe/tandem mass spectrometer combination was utilized to det
24  Tandem MS using a quadrupole time-of-flight tandem mass spectrometer distinguishes ACh from isobaric
25 n electrospray ionization triple- quadrupole tandem mass spectrometer (ESI-MS/MS) via a microspray in
26 ively little cost into virtually any type of tandem mass spectrometer, for example, triple quadrupole
27 iation (CID) with Xe using a guided ion beam tandem mass spectrometer (GIBMS).
28 without requiring major modifications to the tandem mass spectrometer hardware.
29 commercial quadrupole/time-of-flight (QqTOF) tandem mass spectrometer has been adapted for ion/ion re
30 commercially available linear ion trap (LIT) tandem mass spectrometer (i.e., an MDS SCIEX 2000 Q TRAP
31              The approach can be used with a tandem mass spectrometer in real time to rapidly select
32                                     A hybrid tandem mass spectrometer is constructed by interfacing a
33 ght/time-of-flight (TOF/TOF) high-resolution tandem mass spectrometer is described for sequencing pep
34 ion reactions in a quadrupole/time-of-flight tandem mass spectrometer is illustrated.
35                               A novel hybrid tandem mass spectrometer is presented that combines a li
36                            A guided-ion beam tandem mass spectrometer is used to study the reactions
37 ning the extract to the liquid chromatograph-tandem mass spectrometer (LC-MS/MS) or direct coupling o
38 ic pressure chemical ionization source and a tandem mass spectrometer (MS/MS) to enhance the sensitiv
39 sure chemical ionization (APCI) source and a tandem mass spectrometer (MS/MS) with minimum sample pre
40 rospray ionization quadrupole time-of-flight tandem mass spectrometer (nanoESI-Q-TOF MS/MS).
41 oupled to one chromatographic column and one tandem mass spectrometer operated in the turbo ion spray
42 ere developed on a quadrupole/time-of-flight tandem mass spectrometer (QqTOF) containing three quadru
43 ion cell (Q2) of a quadrupole/time-of-flight tandem mass spectrometer (QqTOF), where the electron-tra
44          However, to date, triple quadrupole tandem mass spectrometers, the workhorses of quantitativ
45 gment spectroscopy has been carried out in a tandem mass spectrometer to determine the three-dimensio
46 spectra obtained from both triple-quadrupole tandem mass spectrometers (TSQ) and quadrupole ion trap
47 linear solvent gradients coupled to either a tandem mass spectrometer using electrospray ionization o
48 tection was performed on a triple quadrupole tandem mass spectrometer using time-triggered selected r
49 pressure photoionization (APPI) source and a tandem mass spectrometer was developed for the quantitat
50 ization coupled to quadrupole/time-of-flight tandem mass spectrometers, we have generated a proteome
51                                            A tandem mass spectrometer with an ion trap operating in n
52  dilution liquid chromatography coupled to a tandem mass spectrometer with electrospray ionization an
53                          We have developed a tandem mass spectrometer with the capability for control

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