A major challenge for breath research is the lack of standardization in sampling and analysis. To address this, a test that utilizes a standardized intervention and a defined study protocol has been proposed to explore disparities in breath research across different analytical platforms and to provide benchmark values for comparison. Specifically, the Peppermint Experiment involves the targeted analysis in exhaled breath of volatile constituents of peppermint oil after ingestion of the encapsulated oil. Data from the Peppermint Experiment performed by proton transfer reaction mass spectrometry (PTR-MS) and selected ion flow tube mass spectrometry (SIFT-MS) are presented and discussed herein, including the product ions associated with the ke...
© 2016 Future Science Ltd.Aim: Breath analyses have potential to detect early signs of disease onset...
Breath gas analysis is a promising technology in the frame of medical diagnostics. By identifying di...
Volatile organic compounds (VOCs) found in exhaled breath (EB) have the potential to transform the d...
A major challenge for breath research is the lack of standardization in sampling and analysis. To ad...
Exhaled breath contains hundreds of volatile organic compounds (VOCs) which offer the potential for ...
Exhaled breath contains hundreds of volatile organic compounds (VOCs) which offer the potential for ...
Sampling of volatile organic compounds (VOCs) has shown promise for detection of a range of diseases...
Sampling of volatile organic compounds (VOCs) has shown promise for detection of a range of diseases...
Exhaled breath contains hundreds of volatile organic compounds (VOCs) which offers the potential for...
Exhaled breath contains hundreds of volatile organic compounds (VOCs) which offer the potential for ...
Breath analysis by secondary electrospray ionization high-resolution mass spectrometry (SESI-HRMS) h...
Breath analysis is an alternative approach for disease diagnosis and for monitoring therapy. The lac...
Contains fulltext : 206108.pdf (publisher's version ) (Open Access
peer reviewedThe high potential of exhaled breath for disease diagnosis has been highlighted in nume...
© 2016 Future Science Ltd.Aim: Breath analyses have potential to detect early signs of disease onset...
Breath gas analysis is a promising technology in the frame of medical diagnostics. By identifying di...
Volatile organic compounds (VOCs) found in exhaled breath (EB) have the potential to transform the d...
A major challenge for breath research is the lack of standardization in sampling and analysis. To ad...
Exhaled breath contains hundreds of volatile organic compounds (VOCs) which offer the potential for ...
Exhaled breath contains hundreds of volatile organic compounds (VOCs) which offer the potential for ...
Sampling of volatile organic compounds (VOCs) has shown promise for detection of a range of diseases...
Sampling of volatile organic compounds (VOCs) has shown promise for detection of a range of diseases...
Exhaled breath contains hundreds of volatile organic compounds (VOCs) which offers the potential for...
Exhaled breath contains hundreds of volatile organic compounds (VOCs) which offer the potential for ...
Breath analysis by secondary electrospray ionization high-resolution mass spectrometry (SESI-HRMS) h...
Breath analysis is an alternative approach for disease diagnosis and for monitoring therapy. The lac...
Contains fulltext : 206108.pdf (publisher's version ) (Open Access
peer reviewedThe high potential of exhaled breath for disease diagnosis has been highlighted in nume...
© 2016 Future Science Ltd.Aim: Breath analyses have potential to detect early signs of disease onset...
Breath gas analysis is a promising technology in the frame of medical diagnostics. By identifying di...
Volatile organic compounds (VOCs) found in exhaled breath (EB) have the potential to transform the d...