DocumentCode :
2202309
Title :
Modular Sampling and Analysis Techniques for the Real-Time Analysis of Human Breath
Author :
Frank, Matthias ; Farquar, George ; Adams, Kristl ; Bogan, Michael ; Martin, Audrey ; Benner, Henry ; Spadaccini, Christopher ; Steele, Paul ; Sankaran, Shankar ; Loyola, Bryan ; Morgan, Josh ; Davis, Cristina
Author_Institution :
Lawrence Livermore Nat. Lab., Livermore
fYear :
2007
fDate :
28-31 Oct. 2007
Firstpage :
10
Lastpage :
13
Abstract :
At LLNL and UC Davis, we are developing several techniques for the real-time sampling and analysis of trace gases, aerosols and exhaled breath that could be useful for a modular, integrated system for breath analysis. Those techniques include single-particle bioaerosol mass spectrometry (BAMS) for the analysis of exhaled aerosol particles or droplets as well as breath samplers integrated with gas chromatography mass spectrometry (GC-MS) or MEMS-based differential mobility spectrometry (DMS). We describe these techniques and present recent data obtained from human breath or breath condensate, in particular, addressing the question of how environmental exposure influences the composition of breath.
Keywords :
aerosols; bioMEMS; biomedical imaging; biomedical materials; chromatography; drops; mass spectra; pneumodynamics; LLNL Davis; MEMS-based differential mobility spectrometry; UC Davis; aerosols; breath condensate; droplets; environmental exposure; exhaled aerosol particles; gas chromatography mass spectrometry; human breath; modular sampling; real-time sampling; single-particle bioaerosol mass spectrometry; trace gases; Aerosols; Cardiac disease; Cardiovascular diseases; Gas chromatography; Humans; Instruments; Magnesium compounds; Mass spectroscopy; Real time systems; Sampling methods;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Sensors, 2007 IEEE
Conference_Location :
Atlanta, GA
ISSN :
1930-0395
Print_ISBN :
978-1-4244-1261-7
Electronic_ISBN :
1930-0395
Type :
conf
DOI :
10.1109/ICSENS.2007.4388322
Filename :
4388322
Link To Document :
بازگشت