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A breath sampling system assessing the influence of respiratory rate on exhaled breath composition
- Source :
- 2015 37th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), EMBC
- Publication Year :
- 2016
-
Abstract
- This work presents a computerized system to monitor mouth pressure, tidal volume, exhaled airflow, respiration rate and end-tidal partial pressure of CO 2 during breath collection. The system was used to investigate the effect of different respiratory rates on the volatile organic compounds (VOCs) concentrations in exhaled breath. For this purpose, VOCs with well-defined biochemical pathways and different chemical and physical properties were selected as biomarkers related to metabolism (acetone and isopropyl alcohol), cholesterol synthesis (isoprene) and intestinal microflora activity (ethanol). Mixed breath was collected from a nominally healthy volunteer in resting conditions by filling a Nalophan bag. The subject followed a regimented breathing pattern at different respiratory rates (10, 30 and 50 breaths per minute). Results highlight that ventilation pattern strongly influences the concentration of the selected compounds. The proposed system allows exhaled breath to be collected also in patients showing dyspnea such as in case of chronic heart failure, asthma and pulmonary diseases.
- Subjects :
- Volatile Organic Compounds
Respiratory rate
business.industry
Breath composition
Partial Pressure
Carbon Dioxide
medicine.disease
3. Good health
Breath gas analysis
Breath Tests
Respiratory Rate
Exhalation
Anesthesia
Heart failure
medicine
Breathing
Tidal Volume
Humans
Respiratory system
business
Tidal volume
Biomarkers
Asthma
Subjects
Details
- ISBN :
- 978-1-4244-9271-8
- ISSN :
- 26940604
- ISBNs :
- 9781424492718
- Volume :
- 2015
- Database :
- OpenAIRE
- Journal :
- Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference
- Accession number :
- edsair.doi.dedup.....70e834a8e2f2d989f37894acbf60e128