IntroductionThe pattern of exhaled breath volatile organic compounds represents a metabolic biosignature with the potential to identify and characterize lung cancer. Breath biosignature-based classification of homogeneous subgroups of lung cancer may be more accurate than a global breath signature. Combining breath biosignatures with clinical risk factors may improve the accuracy of the signature.ObjectivesTo develop an exhaled breath biosignature of lung cancer using a colorimetric sensor array and to determine the accuracy of breath biosignatures of lung cancer characteristics with and without the inclusion of clinical risk factors.MethodsThe exhaled breath of 229 study subjects, 92 with lung cancer and 137 controls, was drawn across a co...
Lung cancer is one of the most frequently diagnosed cancers worldwide and is still the leading cause...
Objectives: Lung cancer is a leading cause of mortality. Exhaled-breath analysis of volatile organic...
Monitoring exhaled breath is a very attractive, noninvasive screening technique for early diagnosis ...
Lung cancer is the leading cause of cancer deaths in worldwide. There are many challenges to detect ...
AbstractVolatile organic compounds are able to be detected in the exhaled breath by a variety of sen...
Exhaled breath contains hundreds of volatile organic compounds (VOCs). Several independent researche...
Introduction: Lung cancer remains a leading cause of cancer mortality. Exhaled-breath analysis of vo...
Early diagnosis of lung cancer is important due to high mortality in late stages of the disease. An ...
ObjectivesThe analysis of exhaled breath is a promising noninvasive tool for the diagnosis of lung c...
Lung cancer is the leading cause of cancer-related mortality worldwide. Methods for early detection ...
Lung cancer is characterized by a tremendously high mortality rate and a low 5-year survival rate wh...
The Breath Test is based on the analysis of the exhaled breath which is largely composed of nitrogen...
Introduction: Exhaled-breath analysis of volatile organic compounds could detect lung cancer earlier...
One of the main causes of the high mortality rate in lung cancer is the late-stage tumor detection. ...
Lung cancer is one of the most frequently diagnosed cancers worldwide and is still the leading cause...
Objectives: Lung cancer is a leading cause of mortality. Exhaled-breath analysis of volatile organic...
Monitoring exhaled breath is a very attractive, noninvasive screening technique for early diagnosis ...
Lung cancer is the leading cause of cancer deaths in worldwide. There are many challenges to detect ...
AbstractVolatile organic compounds are able to be detected in the exhaled breath by a variety of sen...
Exhaled breath contains hundreds of volatile organic compounds (VOCs). Several independent researche...
Introduction: Lung cancer remains a leading cause of cancer mortality. Exhaled-breath analysis of vo...
Early diagnosis of lung cancer is important due to high mortality in late stages of the disease. An ...
ObjectivesThe analysis of exhaled breath is a promising noninvasive tool for the diagnosis of lung c...
Lung cancer is the leading cause of cancer-related mortality worldwide. Methods for early detection ...
Lung cancer is characterized by a tremendously high mortality rate and a low 5-year survival rate wh...
The Breath Test is based on the analysis of the exhaled breath which is largely composed of nitrogen...
Introduction: Exhaled-breath analysis of volatile organic compounds could detect lung cancer earlier...
One of the main causes of the high mortality rate in lung cancer is the late-stage tumor detection. ...
Lung cancer is one of the most frequently diagnosed cancers worldwide and is still the leading cause...
Objectives: Lung cancer is a leading cause of mortality. Exhaled-breath analysis of volatile organic...
Monitoring exhaled breath is a very attractive, noninvasive screening technique for early diagnosis ...