Objectives/HypothesisElectronic nose (E-nose) technology has various applications such as the monitoring of air quality and the detection of explosive and chemical agents. We studied the diagnostic accuracy of volatile organic compounds (VOC) pattern analysis in exhaled breath by means of an E-nose in patients with head and neck squamous cell carcinoma (HNSCC).Study DesignCohort study. Exhaled breath samples from patients with HNSCC were analyzed by using an E-Nose.MethodsThirty-six patients diagnosed with HNSCC exhaled into a 5-litre Tedlar bag. The control group consisted of 23 patients visiting the outpatient clinic for other (benign) conditions. Air samples were analyzed using an E-nose.ResultsLogistic regression showed a significant di...
Background The aim of this feasibility study was to assess the diagnostic performance of an electron...
Introduction: Profiling volatile organic compounds in exhaled breath enables the diagnosis of severa...
Background: Exhaled breath contains thousands of gaseous volatile organic compounds (VOCs) that may ...
Objectives/HypothesisElectronic nose (E-nose) technology has various applications such as the monito...
The aim of our study was to assess whether a polymer-based e-nose can distinguish head and neck canc...
IMPORTANCE There has been a growing interest in the use of electronic noses (e-noses) in detecting v...
Disease specific patterns of volatile organic compounds can be detected in exhaled breath using an e...
Introduction Detecting volatile organic compounds in exhaled breath enables the diagnosis of cancer....
Electronic noses (e-noses) are based on arrays of different sensor types that respond to specific fe...
This thesis investigated the feasibility of electronic nose technology for the diagnostic of primari...
Background The aim of this feasibility study was to assess the diagnostic performance of an electron...
Background The aim of this feasibility study was to assess the diagnostic performance of an electron...
Introduction: Profiling volatile organic compounds in exhaled breath enables the diagnosis of severa...
Background: Exhaled breath contains thousands of gaseous volatile organic compounds (VOCs) that may ...
Objectives/HypothesisElectronic nose (E-nose) technology has various applications such as the monito...
The aim of our study was to assess whether a polymer-based e-nose can distinguish head and neck canc...
IMPORTANCE There has been a growing interest in the use of electronic noses (e-noses) in detecting v...
Disease specific patterns of volatile organic compounds can be detected in exhaled breath using an e...
Introduction Detecting volatile organic compounds in exhaled breath enables the diagnosis of cancer....
Electronic noses (e-noses) are based on arrays of different sensor types that respond to specific fe...
This thesis investigated the feasibility of electronic nose technology for the diagnostic of primari...
Background The aim of this feasibility study was to assess the diagnostic performance of an electron...
Background The aim of this feasibility study was to assess the diagnostic performance of an electron...
Introduction: Profiling volatile organic compounds in exhaled breath enables the diagnosis of severa...
Background: Exhaled breath contains thousands of gaseous volatile organic compounds (VOCs) that may ...