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Developing and validating the technology

Kim, E. H. et al. Novel Analysis of 4DCT Imaging Quantifies Progressive Increases in Anatomic Dead Space During Mechanical Ventilation in Mice. Journal of Applied Physiology jap.00903.2016 (2017).

Samarage, C. R. et al. Technical Note: Contrast free angiography of the pulmonary vasculature in live mice using a laboratory x-ray source. Medical Physics 43, 6017–6023 (2016).

Dubsky, S. et al. Assessment of airway response distribution and paradoxical airway dilation in mice during methacholine challenge. Journal of Applied Physiology jap.00476.2016 (2016).

Donnelley, M. et al. Tracking extended mucociliary transport activity of individual deposited particles: longitudinal synchrotron X-ray imaging in live mice. Journal of Synchrotron Radiation 21, 768–773 (2014).

Morgan, K. S. et al. Measuring Airway Surface Liquid Depth in Ex Vivo Mouse Airways by X-Ray Imaging for the Assessment of Cystic Fibrosis Airway Therapies. PLoS ONE 8, e55822 (2013).

Donnelley, M., Morgan, K. S., Siu, K. K. & Parsons, D. W. Dry deposition of pollutant and marker particles onto live mouse airway surfaces enhances monitoring of individual particle mucociliary transit behaviour. Journal of synchrotron radiation 19, 551–558 (2012).

Donnelley, M. et al. Real-time non-invasive detection of inhalable particulates delivered into live mouse airways. Journal of Synchrotron Radiation 16, 553–561 (2009).

Parsons, D. W. et al. High-resolution visualization of airspace structures in intact mice via synchrotron phase-contrast X-ray imaging (PCXI). Journal of Anatomy 213, 217–227 (2008).