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Updated: May 13, 2026

Electromyometrial Imaging of Uterine Contractions in Pregnant Women
Published on: May 26, 2023
Spatiotemporal patterning of uterine excitation patterns in human labour
Eleftheria Pervolaraki1, Arun V Holden
1School of Biomedical Sciences, University of Leeds, Leeds LS2 9JT, UK. a.v.holden@leeds.ac.uk
Abstract:
The mechanisms leading to the initiation of normal, premature or dysfunctional human labour are poorly understood, as animal models are inappropriate, and experimental studies are limited. Computational modelling provides a means of linking non-invasive clinical data with the results of in vitro cell and tissue physiology. Nonlinear wave processes - propagation in an excitable medium - provides a quantitatively testable description of mechanisms of premature and full term labour, and a view of changes in uterine electrophysiology during gestation as a trajectory in excitation and intercellular coupling parameter space. Propagation phenomena can account for both premature and full term labour.
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