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MATHEMATICAL MODELS OF CALCIUM AND TIGHT JUNCTIONS IN NORMAL AND RECONSTRUCTED EPIDERMIS

Published online by Cambridge University Press:  11 January 2016

MATTHEW P. ADAMS*
Affiliation:
Mathematical Sciences School, Queensland University of Technology, Brisbane, Australia email [email protected]
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Abstract

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Type
Abstracts of Australasian PhD Theses
Copyright
© 2016 Australian Mathematical Publishing Association Inc. 

References

Adams, M. P., Mallet, D. G. and Pettet, G. J., ‘Active regulation of the epidermal calcium profile’, J. Theoret. Biol. 301 (2012), 112121.CrossRefGoogle ScholarPubMed
Adams, M. P., Mallet, D. G. and Pettet, G. J., ‘A continuum model of the growth of engineered epidermal skin substitutes’, ANZIAM J. Electron. Suppl. 53 (2012), C90C109.Google Scholar
Adams, M. P., Mallet, D. G. and Pettet, G. J., ‘Solution methods for advection–diffusion–reaction equations on growing domains and subdomains, with application to modelling skin substitutes’, ICCM2012, 4th Int. Conf. Computational Methods, Gold Coast, Australia, 25–28 November 2012, 230.Google Scholar
Adams, M. P., Mallet, D. G. and Pettet, G. J., ‘Towards a quantitative theory of epidermal calcium profile formation in unwounded skin’, PLoS One 10 (2015), e0116751.CrossRefGoogle ScholarPubMed