peer reviewedThermal desorption (TD) tubes are often used to trap and extract VOCs in many applications, from biomonitoring to food aroma characterization [1-3]. Recently, there is a general growing interest in VOCs from biological fluids (breath, serum etc), specially as possible biomarkers of specific disease states. Because of the wide variety of adsorbent materials, the tube can be filled with, it may be challenging to select the optimal tube for biological samples. Indeed, these trapping materials can be used alone or in combination, and depending on the characteristics (chemical and physical), the selectivity can be tuned, as well as the sensitivity and repeatability. In this study, TD adsorbent materials sampling performance...
The feasibility of using adsorbent tubes to collect volatile organic compounds (VOCs) has been demon...
Not all volatile organic compounds (VOCs) are suitable for sampling from air onto sorbent tubes (ST)...
Volatile organic compounds (VOCs) are monitored in numerous fields using several commercially-availa...
peer reviewedThe increased attraction of biological volatile compounds has opened the route to a wid...
Bacterial volatile organic compounds (VOCs) have been considered as sensitive and specific biomarker...
Offline breath analysis by thermal desorption gas chromatography mass spectrometry (TD-GC-MS) requir...
The lack of standardization of breath sampling is a major contributing factor to the poor repeatabil...
Monitoring volatile organic compounds (VOCs) from exhaled breath has been used to determine exposure...
peer reviewedThe analysis of bacterial volatile organic compounds has gained attraction as a non-inv...
Thermal desorption is used extensively in exhaled breath volatile organic compound (VOC) analysis, a...
The superiority of thermal desorption-gas chromatography (TD-GC) applications is well known for the ...
BACKGROUND:Offline breath analysis by GC-MS requires the use of sorbent traps to concentrate and sto...
A comparison between two types of adsorbent tubes, the commonly used Tenax TA and a multi-sorbent be...
The chemical characterization of volatile compounds in human breath is a potential tool for modern ...
A comparison between two types of adsorbent tubes, the commonly used Tenax TA and a multi-sorbent be...
The feasibility of using adsorbent tubes to collect volatile organic compounds (VOCs) has been demon...
Not all volatile organic compounds (VOCs) are suitable for sampling from air onto sorbent tubes (ST)...
Volatile organic compounds (VOCs) are monitored in numerous fields using several commercially-availa...
peer reviewedThe increased attraction of biological volatile compounds has opened the route to a wid...
Bacterial volatile organic compounds (VOCs) have been considered as sensitive and specific biomarker...
Offline breath analysis by thermal desorption gas chromatography mass spectrometry (TD-GC-MS) requir...
The lack of standardization of breath sampling is a major contributing factor to the poor repeatabil...
Monitoring volatile organic compounds (VOCs) from exhaled breath has been used to determine exposure...
peer reviewedThe analysis of bacterial volatile organic compounds has gained attraction as a non-inv...
Thermal desorption is used extensively in exhaled breath volatile organic compound (VOC) analysis, a...
The superiority of thermal desorption-gas chromatography (TD-GC) applications is well known for the ...
BACKGROUND:Offline breath analysis by GC-MS requires the use of sorbent traps to concentrate and sto...
A comparison between two types of adsorbent tubes, the commonly used Tenax TA and a multi-sorbent be...
The chemical characterization of volatile compounds in human breath is a potential tool for modern ...
A comparison between two types of adsorbent tubes, the commonly used Tenax TA and a multi-sorbent be...
The feasibility of using adsorbent tubes to collect volatile organic compounds (VOCs) has been demon...
Not all volatile organic compounds (VOCs) are suitable for sampling from air onto sorbent tubes (ST)...
Volatile organic compounds (VOCs) are monitored in numerous fields using several commercially-availa...