Soft chemical ionization mass spectrometric techniques, such as proton transfer reaction mass spectrometry (PTR-MS), are often used in breath analysis, being particularly powerful for real-time measurements. To ascertain the type and concentration of volatiles in exhaled breath clearly assignable product ions resulting from these volatiles need to be determined. This is difficult for compounds where isomers are common, and one important class of breath volatiles where this occurs are ketones. Here we present a series of extensive measurements on the reactions of H3O+ with a selection of ketones using PTR-MS. Of particular interest is to determine if ketone isomers can be distinguished without the need for pre-separation by manipulating the ...
The prospects for exploiting proton transfer reaction-time of flight-mass spectrometry (PTR-ToF-MS) ...
The exhaled breath is rich in a wide range of volatile organic compounds with the potential to provi...
Breath is a mixture of nitrogen, oxygen, carbon dioxide, water vapour, inert gases, and a small frac...
Product ion distributions resulting from the primary reactions of H3O+ with nine D-labeled volatile ...
The work in this thesis presents a series of investigations of ion/molecule processes taking place i...
Contains fulltext : 30039_deveofprr.pdf (publisher's version ) (Open Access)The me...
Background: Aldehydes and ketones are quite interesting volatile organic components of exhaled breat...
The analysis of volatiles is of high relevance for a wide range of applications from environmental a...
As a part of an ongoing study to determine the concentrations of inhalation anaesthetics in the exha...
This noninvasive method for collection and analysis of a wide range of aldehydes and ketones in huma...
This thesis is focused on analysis of volatile organic compounds in breath by mass spectrometry. For...
Livre ISBN-13 : 978-3-902811-91-2International audienceThe aim of this work was to compare detection...
Breath analysis research is being successfully pursued using a variety of analytical methods, promin...
This thesis reports the use of Proton Transfer Reaction-Mass Spectrometry (PTR-MS) in the health sci...
The evolution of the selected ion flow tube, SIFT, used to study ion-molecule reactions of interstel...
The prospects for exploiting proton transfer reaction-time of flight-mass spectrometry (PTR-ToF-MS) ...
The exhaled breath is rich in a wide range of volatile organic compounds with the potential to provi...
Breath is a mixture of nitrogen, oxygen, carbon dioxide, water vapour, inert gases, and a small frac...
Product ion distributions resulting from the primary reactions of H3O+ with nine D-labeled volatile ...
The work in this thesis presents a series of investigations of ion/molecule processes taking place i...
Contains fulltext : 30039_deveofprr.pdf (publisher's version ) (Open Access)The me...
Background: Aldehydes and ketones are quite interesting volatile organic components of exhaled breat...
The analysis of volatiles is of high relevance for a wide range of applications from environmental a...
As a part of an ongoing study to determine the concentrations of inhalation anaesthetics in the exha...
This noninvasive method for collection and analysis of a wide range of aldehydes and ketones in huma...
This thesis is focused on analysis of volatile organic compounds in breath by mass spectrometry. For...
Livre ISBN-13 : 978-3-902811-91-2International audienceThe aim of this work was to compare detection...
Breath analysis research is being successfully pursued using a variety of analytical methods, promin...
This thesis reports the use of Proton Transfer Reaction-Mass Spectrometry (PTR-MS) in the health sci...
The evolution of the selected ion flow tube, SIFT, used to study ion-molecule reactions of interstel...
The prospects for exploiting proton transfer reaction-time of flight-mass spectrometry (PTR-ToF-MS) ...
The exhaled breath is rich in a wide range of volatile organic compounds with the potential to provi...
Breath is a mixture of nitrogen, oxygen, carbon dioxide, water vapour, inert gases, and a small frac...