Analysis of volatile organic compounds (VOCs) from breath or clinical samples for disease diagnosis is an attractive proposition because it is noninvasive and rapid. There are numerous studies showing its potential, yet there are barriers to its development. Sampling and sample handling is difficult, and when coupled with a variety of analytical instrumentation, the same samples can give different results. Background air and the environment a person has been exposed to can greatly affect the VOCs emitted by the body; however, this is not an easy problem to solve. This review investigates the use of VOCs in disease diagnosis, the analytical techniques employed and the problems associated with sample handling and standardization. It then sugg...
Background: Breath analysis is a burgeoning field, with interest in volatile organic compounds (VOCs...
Exhaled breath VOCs analysis is safe and non-invasive method of monitoring for human metabolic profi...
Analysis of volatile organic compounds (VOCs) in human breath can provide information about the curr...
Breath analysis is a promising field with great potential for non-invasive diagnosis of a number of ...
Breath analysis is a promising field with great potential for non-invasive diagnosis of a number of ...
The experimental challenges presented by the analysis of trace volatile organic compounds (VOCs) in ...
There is an increasing interest in the use of breath analysis for monitoring human physiology and ex...
Exhaled breath offers an alternative medium for detecting certain types of biomarkers. Further, in s...
In ancient times, physicians already valued human breath as a window of diseased and healthy organs....
Introduction: Exhaled breath analysis has the potential to provide valuable insight on the status of...
Exhaled breath contains thousands of volatile organic compounds (VOCs) of which the composition vari...
Background: Breath analysis is a burgeoning field, with interest in volatile organic compounds (VOCs...
Exhaled breath VOCs analysis is safe and non-invasive method of monitoring for human metabolic profi...
Analysis of volatile organic compounds (VOCs) in human breath can provide information about the curr...
Breath analysis is a promising field with great potential for non-invasive diagnosis of a number of ...
Breath analysis is a promising field with great potential for non-invasive diagnosis of a number of ...
The experimental challenges presented by the analysis of trace volatile organic compounds (VOCs) in ...
There is an increasing interest in the use of breath analysis for monitoring human physiology and ex...
Exhaled breath offers an alternative medium for detecting certain types of biomarkers. Further, in s...
In ancient times, physicians already valued human breath as a window of diseased and healthy organs....
Introduction: Exhaled breath analysis has the potential to provide valuable insight on the status of...
Exhaled breath contains thousands of volatile organic compounds (VOCs) of which the composition vari...
Background: Breath analysis is a burgeoning field, with interest in volatile organic compounds (VOCs...
Exhaled breath VOCs analysis is safe and non-invasive method of monitoring for human metabolic profi...
Analysis of volatile organic compounds (VOCs) in human breath can provide information about the curr...