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Spatiotemporal patterning of uterine excitation patterns in human labour

机译:人工劳动中子宫兴奋模式的时空分布

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摘要

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.
机译:由于动物模型不合适,并且实验研究有限,导致引发正常,过早或功能失调的人工劳动的机制了解甚少。计算建模提供了一种将非侵入性临床数据与体外细胞和组织生理学结果联系起来的方法。非线性波动过程-在可激发介质中的传播-提供了可定量测试的早产和足月劳动机制的描述,以及妊娠过程中子宫电生理变化的看法,作为激励和细胞间耦合参数空间中的轨迹。繁殖现象可以解释早产和足月劳动。

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