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首页> 外文期刊>Physica, D. Nonlinear phenomena >Slow waves in mutually inhibitory neuronal networks
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Slow waves in mutually inhibitory neuronal networks

机译:相互抑制的神经元网络中的慢波

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A variety of experimental and modeling studies have been performed to investigate wave propagation in networks of thalamic neurons and their relationship to spindle sleep rhythms. It is believed that spindle oscillations result from the reciprocal interaction between thalamocortical (TC) and thalamic reticular (RE) neurons. We consider a network of TC and RE cells reduced to a one-layer network model and represented by a system of singularly perturbed integral-differential equations. Geometric singular perturbation methods are used to prove the existence of a locally unique slow wave pulse that propagates along the network. By seeking a slow pulse solution, we reformulate the problem to finding a heteroclinic orbit in a 3D system of ODEs with two additional constraints on the location of the orbit at two distinct points in time. In proving the persistence of the singular heteroclinic orbit, difficulties arising from the solution passing near points where normal hyperbolicity is lost on a 2D critical manifold are overcome by employing results by Wechselberger [Singularly perturbed folds and canards in R-3, Thesis, TU-Wien, 1998]. (C) 2004 Elsevier B.V. All rights reserved.
机译:已经进行了各种实验和建模研究,以研究丘脑神经元网络中的波传播及其与纺锤体睡眠节律的关系。据信纺锤体振荡是由丘脑皮层(TC)和丘脑网状(RE)神经元之间的相互作用引起的。我们考虑将TC和RE单元网络简化为一层网络模型,并用奇摄动积分微分方程组表示。几何奇异摄动方法用于证明存在沿网络传播的局部唯一慢波脉冲。通过寻找慢脉冲解决方案,我们将问题重新构造为在ODE的3D系统中找到一个异质轨道,并在两个不同的时间点对轨道的位置增加了两个限制。在证明奇异异质轨道的持久性时,通过使用Wechselberger [R-3,Thesis,TU-维也纳,1998年]。 (C)2004 Elsevier B.V.保留所有权利。

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