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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Nonlinear dynamics of direction-selective recurrent neural media - art. no. 051904
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Nonlinear dynamics of direction-selective recurrent neural media - art. no. 051904

机译:方向选择性循环神经媒体的非线性动力学-艺术。没有。 051904

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摘要

The direction selectivity of cortical neurons can be accounted for by asymmetric lateral connections. Such lateral connectivity leads to a network dynamics with characteristic properties that can be exploited for distinguishing in neurophysiological experiments this mechanism for direction selectivity from other possible mechanisms. We present a mathematical analysis for a class of direction-selective neural models with asymmetric lateral connections. Contrasting with earlier theoretical studies that have analyzed approximations of the network dynamics by neglecting nonlinearities using methods from linear systems theory, we study the network dynamics with nonlinearity taken into consideration. We show that asymmetrically coupled networks can stabilize stimulus-locked traveling pulse solutions that are appropriate for the modeling of the responses of direction-selective neurons. In addition, out analysis shows that outside a certain regime of stimulus speeds the stability of these solutions breaks down, giving rise to lurching activity waves with specific spatiotemporal periodicity. These solutions, and the bifurcation by which they arise, cannot be easily accounted for by classical models for direction selectivity. [References: 33]
机译:皮质神经元的方向选择性可以通过不对称的横向连接来解释。这种横向连通性导致具有特征特性的网络动力学,可以利用该动力学特性在神经生理学实验中将这种方向选择性机制与其他可能机制区分开。我们为一类具有非对称横向连接的方向选择神经模型提供了数学分析。与早期的理论研究(通过使用线性系统理论的方法通过忽略非线性来分析网络动力学的近似值)相反,我们研究了考虑了非线性的网络动力学。我们显示不对称耦合的网络可以稳定刺激锁定行进脉冲解决方案,适合于方向选择性神经元的响应建模。此外,分析表明,在一定的刺激速度范围之外,这些解决方案的稳定性会下降,从而产生具有特定时空周期性的潜伏活动波。这些解决方案以及它们产生的分歧,很难通过经典的方向选择性模型来解释。 [参考:33]

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