Measurement of blood-borne volatile organic compounds (VOCs) occurring in human exhaled breath as a result of metabolic changes or pathological disorders is a promising tool for noninvasive medical diagnosis, such as exhaled acetone measurements in terms of diabetes monitoring. The conventional methods for exhaled breath analysis are based on spectrometry techniques, however, the development of gas sensors has made them more and more attractive from a medical point of view. This review focuses on the latest achievements in gas sensors for exhaled acetone detection. Several different methods and techniques are presented and discussed as well
Breath analysis has long been recognized as a potentially attractive method for the diagnosis of sev...
Trace concentrations of volatile organic compounds (VOCs) in human exhale have been reported for the...
SummaryVarious compounds in present human breath have long been loosely associated with pathological...
The review describes the technologies used in the field of breath analysis to diagnose and monitor d...
Abstract: Breath analysis has attracted lots of interest in clinical and scientific research for its...
Along with more than two hundred volatile organic compounds (VOCs), acetone is also a normal constit...
Abstract: Breath analysis has attracted lots of interest in clinical and scientific research for its...
Metal oxide (MOx) gas sensors have attracted considerable attention from both scientific and practic...
Diabetes is currently the leading cause of death in the world, and is caused by a disordered metabol...
Over hundreds of volatile organic compounds (VOCs) have been detected in human exhaled breath. Some ...
In this modern era, lifestyle-related illnesses have become increasingly common and the need for tec...
Extensive research shows that there is a close correlation between a disease diagnostic and the pati...
Metabolic changes or pathological disorders are a promising tool for non-invasive medical diagnosis,...
Breath analysis has been considered a suitable tool to evaluate diseases of the respiratory system a...
Breath analysis is in use since a long history as a part of medical diagnostics. Idea that some of t...
Breath analysis has long been recognized as a potentially attractive method for the diagnosis of sev...
Trace concentrations of volatile organic compounds (VOCs) in human exhale have been reported for the...
SummaryVarious compounds in present human breath have long been loosely associated with pathological...
The review describes the technologies used in the field of breath analysis to diagnose and monitor d...
Abstract: Breath analysis has attracted lots of interest in clinical and scientific research for its...
Along with more than two hundred volatile organic compounds (VOCs), acetone is also a normal constit...
Abstract: Breath analysis has attracted lots of interest in clinical and scientific research for its...
Metal oxide (MOx) gas sensors have attracted considerable attention from both scientific and practic...
Diabetes is currently the leading cause of death in the world, and is caused by a disordered metabol...
Over hundreds of volatile organic compounds (VOCs) have been detected in human exhaled breath. Some ...
In this modern era, lifestyle-related illnesses have become increasingly common and the need for tec...
Extensive research shows that there is a close correlation between a disease diagnostic and the pati...
Metabolic changes or pathological disorders are a promising tool for non-invasive medical diagnosis,...
Breath analysis has been considered a suitable tool to evaluate diseases of the respiratory system a...
Breath analysis is in use since a long history as a part of medical diagnostics. Idea that some of t...
Breath analysis has long been recognized as a potentially attractive method for the diagnosis of sev...
Trace concentrations of volatile organic compounds (VOCs) in human exhale have been reported for the...
SummaryVarious compounds in present human breath have long been loosely associated with pathological...