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1 n the commercially available and a lab-built sprayer.
2 y than when it was delivered intranasally by sprayer.
3 ample sprayer is a conventional Z-spray type sprayer.
4 llows switching between reference and sample sprayer.
5 rate of 20-40 nl/min using an ultra-low flow sprayer.
6 ed onto a glass slide using an HTX pneumatic sprayer.
7 ter portability due to the robustness of the sprayer.
8 g for the slight variation in signal between sprayers.
11 ystem that is physically located between the sprayer and the orifice of a mass spectrometer can serve
15 a sections are analyzed with three lab-built sprayers, and classification accuracy for adenocarcinoma
17 nce neither the voltage nor positions of the sprayers are changed, the nanospray has greater spray st
20 ncluded changing the electrospray ionization sprayer configuration, increasing the sample injection v
26 The results demonstrated that the dual-ESI-sprayer, dual-inlet design provides reference peaks on e
28 son between the mass accuracy using dual-ESI-sprayer, dual-nozzle TOF-MS and that obtained using a do
29 r molecular-formula confirmation, a dual-ESI-sprayer, dual-nozzle version of this design was used.
31 itivity porous electrospray ionization (ESI) sprayer for the proteomic analysis of a moderately compl
33 ity to lower noise levels with the porous CE sprayer, illustrated by better signal-to-noise ratios of
34 a solvent system of 3:1 v/v ACN:H(2)O, and a sprayer incident angle, alpha, of 35 degrees gave the hi
39 s spectrometry (DESI-MS) is assessed, as the sprayer is thought to be a major source of variability.
40 ass spectrometry (CE-MS), using a porous tip sprayer, is proposed for the first time for highly sensi
43 When using CHCA, the optimized automatic sprayer method and humidified sublimation method resulte
44 ng existing delivery systems (drenches, line sprayers, on-line dips) can significantly reduce fruit d
45 -flow-rate APCI and APPI sources with a GDVN sprayer promise new applications for low- and medium-pol
48 ontrolled to obtain reliable data, and a new sprayer setup with a fixed solvent capillary geometry sh
50 le-design combinations, including single-ESI-sprayer, single-nozzle; dual-ESI-sprayer, single-nozzle;
51 single-ESI-sprayer, single-nozzle; dual-ESI-sprayer, single-nozzle; dual-ESI-sprayer, Y-shaped inlet
54 ed method developed for the automatic matrix sprayer system resulted in approximately double the numb
56 e of 100 gai/ha in 200 L water using a track sprayer system, residues of these fungicides on the leaf
58 s temperature, the minimum distance from the sprayer tip to the mass spectrometer inlet and therefore
62 ulizing gas (N(2)) pressure of 3.9 bar and a sprayer voltage of 4.5 kV (positive ionization mode) or
64 ly reported proteomic application of the ESI sprayer, we evaluated preconcentration with SPME and mul
66 e; dual-ESI-sprayer, single-nozzle; dual-ESI-sprayer, Y-shaped inlet; and dual-ESI-sprayer, dual-inle