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首页> 外文期刊>Journal of Computational Neuroscience >Propagating Waves in Visual Cortex: A Large-Scale Model of Turtle Visual Cortex
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Propagating Waves in Visual Cortex: A Large-Scale Model of Turtle Visual Cortex

机译:在视觉皮层中传播波:海龟视觉皮层的大型模型

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摘要

This article describes a large-scale model of turtle visual cortex that simulates the propagating waves of activity seen in real turtle cortex. The cortex model contains 744 multicompartment models of pyramidal cells, stellate cells, and horizontal cells. Input is provided by an array of 201 geniculate neurons modeled as single compartments with spike-generating mechanisms and axons modeled as delay lines. Diffuse retinal flashes or presentation of spots of light to the retina are simulated by activating groups of geniculate neurons. The model is limited in that it does not have a retina to provide realistic input to the geniculate, and the cortex and does not incorporate all of the biophysical details of real cortical neurons. However, the model does reproduce the fundamental features of planar propagating waves. Activation of geniculate neurons produces a wave of activity that originates at the rostrolateral pole of the cortex at the point where a high density of geniculate afferents enter the cortex. Waves propagate across the cortex with velocities of 4 μm/ms to 70 μm/ms and occasionally reflect from the caudolateral border of the cortex.
机译:本文介绍了一个大型的海龟视觉皮层模型,该模型可以模拟在真实的海龟皮层中看到的活动传播波。皮质模型包含744个锥体细胞,星状细胞和水平细胞的多室模型。输入是由201个膝状神经元的阵列提供的,这些神经元被建模为具有刺突产生机制的单个隔室,而轴突则被建模为延迟线。通过激活膝状膝状神经元组,可以模拟弥漫性视网膜闪烁或光斑向视网膜的呈现。该模型的局限性在于它没有视网膜来向膝状体和皮质提供现实的输入,并且没有包含真实皮质神经元的所有生物物理细节。但是,该模型的确重现了平面传播波的基本特征。膝状神经元的激活产生了一个活动波,该活动波起源于高密度的膝状传入神经进入皮层的皮质后外侧极。波以4μm/ ms至70μm/ ms的速度在皮质中传播,并偶尔从皮质的后外侧边界反射。

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