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  4. Piezoresistive Membrane Surface Stress Sensors for Characterization of Breath Samples of Head and Neck Cancer Patients
 
research article

Piezoresistive Membrane Surface Stress Sensors for Characterization of Breath Samples of Head and Neck Cancer Patients

Lang, Hans Peter
•
Loizeau, Frederic
•
Hiou-Feige, Agnes
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2016
Sensors

For many diseases, where a particular organ is affected, chemical by-products can be found in the patient's exhaled breath. Breath analysis is often done using gas chromatography and mass spectrometry, but interpretation of results is difficult and time-consuming. We performed characterization of patients' exhaled breath samples by an electronic nose technique based on an array of nanomechanical membrane sensors. Each membrane is coated with a different thin polymer layer. By pumping the exhaled breath into a measurement chamber, volatile organic compounds present in patients' breath diffuse into the polymer layers and deform the membranes by changes in surface stress. The bending of the membranes is measured piezoresistively and the signals are converted into voltages. The sensor deflection pattern allows one to characterize the condition of the patient. In a clinical pilot study, we investigated breath samples from head and neck cancer patients and healthy control persons. Evaluation using principal component analysis (PCA) allowed a clear distinction between the two groups. As head and neck cancer can be completely removed by surgery, the breath of cured patients was investigated after surgery again and the results were similar to those of the healthy control group, indicating that surgery was successful.

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Type
research article
DOI
10.3390/s16071149
Web of Science ID

WOS:000380967000205

Author(s)
Lang, Hans Peter
Loizeau, Frederic
Hiou-Feige, Agnes
Rivals, Jean-Paul
Romero, Pedro
Akiyama, Terunobu
Gerber, Christoph
Meyer, Ernst
Date Issued

2016

Publisher

Mdpi Ag

Published in
Sensors
Volume

16

Issue

7

Article Number

1149

Subjects

piezoresistive membrane sensors

•

surface stress sensor

•

nanomechanical sensor

•

electronic nose

•

breath analysis

•

head and neck cancer

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
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Available on Infoscience
October 18, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/129866
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