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A theoretical model of inflammation- and mechanotransduction-driven asthmatic airway remodelling (2018)
Journal Article
Hill, M., Philp, C. J., Billington, C. K., Tatler, A. L., Johnson, S. R., O'Dea, R. D., & Brook, B. S. (2018). A theoretical model of inflammation- and mechanotransduction-driven asthmatic airway remodelling. Biomechanics and Modeling in Mechanobiology, 17(5), 1451-1470. https://doi.org/10.1007/s10237-018-1037-4

© 2018, The Author(s). Inflammation, airway hyper-responsiveness and airway remodelling are well-established hallmarks of asthma, but their inter-relationships remain elusive. In order to obtain a better understanding of their inter-dependence, we de... Read More about A theoretical model of inflammation- and mechanotransduction-driven asthmatic airway remodelling.

Effect of loading history on airway smooth muscle cell-matrix adhesions (2018)
Journal Article
Irons, L., Owen, M. R., O'Dea, R. D., & Brook, B. S. (2018). Effect of loading history on airway smooth muscle cell-matrix adhesions. Biophysical Journal, 114(11), 2679-2690. https://doi.org/10.1016/j.bpj.2018.04.026

Integrin-mediated adhesions between airway smooth muscle (ASM) cells and the extracellular matrix (ECM) regulate how contractile forces generated within the cell are transmitted to its external environment. Environmental cues are known to influence t... Read More about Effect of loading history on airway smooth muscle cell-matrix adhesions.

A multiphase multiscale model for nutrient limited tissue growth (2018)
Journal Article
Holden, E., Collis, J., Brook, B. S., & O'Dea, R. D. (2018). A multiphase multiscale model for nutrient limited tissue growth. ANZIAM Journal, 59(4), https://doi.org/10.1017/S1446181118000044

In this work, an effective macroscale description is derived for the growth of tissue on a porous scaffold. A multiphase model is employed to describe the tissue dynamics; linearisation to facilitate a multiple-scale homogenisation provides an effect... Read More about A multiphase multiscale model for nutrient limited tissue growth.