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Updated: Aug 15, 2026

Atmospheric-pressure Molecular Imaging of Biological Tissues and Biofilms by LAESI Mass Spectrometry
Published on: September 3, 2010
Development of high-resolution real-time sub-ppb ethane spectroscopy and some pilot studies in life science
Kenneth D Skeldon1, Graham M Gibson, Cathy A Wyse
1Department of Physics, University of Glasgow University Avenue, Glasgow, G12 8QQ Scotland, United Kingdom. k.skeldon@physics.gla.ac.uk
Abstract:
We describe a high-resolution real-time spectroscopy system targeted to ethane gas with sensitivity > or = 70 ppt and response time from > or = 0.7 s. The measurement technique is based on a mid-IR lead-salt laser passing through a Herriott cell through which a gas sample flows. We compare wavelength scanning and locked configurations and discuss their relative merits. The technology has been motivated by clinical breath testing applications, ethane being widely regarded as the most important breath biomarker for cell damage via free-radical-mediated oxidative attack. We discuss preliminary human and animal studies in which ultrasensitive real-time ethane detection offers new diagnostic and monitoring potential.
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