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Homogenization of Heterogeneously Coupled Bistable ODEs—Applied to Excitation Waves in Pancreatic Islets of Langerhans

机译:非均相耦合双稳态ODE的均质化—应用于朗格罕氏胰岛的激发波

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摘要

We consider a lattice of coupled identical differential equations. The coupling is between nearest neighbors and of resistance type, but the strength of coupling varies from site to site. Such a lattice can, for example, model an islet of Langerhans, where the sites in the lattice model individual but identical β-cells, and the coupling between cells is made of gap junctions.By using a homogenization technique we approximate the coupled discrete equations by a PDE, basically a nonlinear heat equation (a Fisher equation). For appropriate parameters this equation is known to have wave-solutions. Of importance is the fact, that the resulting diffusion coefficient does not only depend on the average of the coupling, but also on the variance of the strength. This means that the heterogeneity of the coupling strength influences the wave velocity—the greater the variance, the slower is the wave. This result is illustrated by simulations, both of a simple prototype equation, and for a full model of coupled beta-cells in both one and two dimensions, and implies that the natural heterogeneity in the islets of Langerhans should be taken into account.
机译:我们考虑耦合相同微分方程的格。耦合在最近的邻居之间,并且是电阻类型,但是耦合的强度因位置而异。例如,这样的晶格可以建模一个Langerhans的小岛,其中晶格中的位点模拟单个但相同的β细胞,并且细胞之间的耦合由间隙连接组成。通过使用均化技术,我们可以近似耦合的离散方程通过PDE,基本上是非线性热方程(费舍尔方程)。对于适当的参数,已知该方程具有波解。重要的事实是,所得的扩散系数不仅取决于耦合的平均值,而且取决于强度的变化。这意味着耦合强度的不均匀性会影响波速-方差越大,波速越慢。通过一个简单的原型方程以及一维和二维耦合β细胞的完整模型的仿真说明了该结果,并暗示应考虑Langerhans胰岛中的天然异质性。

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