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IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|March 3, 2009
The acoustic field in biomedical tissue with midscale inhomogeneitiesRosemary S Thompson, Charlie Macaskill, Whayne Padden
Mathematical Biosciences and Engineering : MBE|March 24, 2021
Modeling flow in embryonic lymphatic vasculature: what is its role in valve development?Christopher D Bertram, Bernard O Ikhimwin, Charlie Macaskill
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|June 26, 2004
Acoustic intensity for a long vessel with noncircular cross sectionRosemary S Thompson, Charlie Macaskill, W Barrie Fraser, et al.
Journal of Mathematical Biology|July 31, 2020
A multiphase model of growth factor-regulated atherosclerotic cap formationMichael G Watson, Helen M Byrne, Charlie Macaskill, et al.
Journal of Theoretical Biology|August 12, 2018
A two-phase model of early fibrous cap formation in atherosclerosisMichael G Watson, Helen M Byrne, Charlie Macaskill, et al.
American Journal of Physiology. Heart and Circulatory Physiology|January 10, 2016
Consequences of intravascular lymphatic valve properties: a study of contraction timing in a multi-lymphangion modelChristopher D Bertram, Charlie Macaskill, Michael J Davis, et al.
Royal Society Open Science|January 9, 2025
Modelling pacemaker oscillations in lymphatic muscle cells: lengthened action potentials by two distinct system effectsEdward J Hancock, Charlie Macaskill, Scott D Zawieja, et al.
The Journal of General Physiology|October 18, 2023
A dual-clock-driven model of lymphatic muscle cell pacemaking to emulate knock-out of Ano1 or IP3REdward J Hancock, Scott D Zawieja, Charlie Macaskill, et al.
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