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A retinal circuit model accounting for wide-field amacrine cells

机译:解释宽视野无长突细胞的视网膜回路模型

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摘要

In previous experimental studies on the visual processing in vertebrates, higher-order visual functions such as the object segregation from background were found even in the retinal stage. Previously, the “linear–nonlinear” (LN) cascade models have been applied to the retinal circuit, and succeeded to describe the input-output dynamics for certain parts of the circuit, e.g., the receptive field of the outer retinal neurons. And recently, some abstract models composed of LN cascades as the circuit elements could explain the higher-order retinal functions. However, in such a model, each class of retinal neurons is mostly omitted and thus, how those neurons play roles in the visual computations cannot be explored. Here, we present a spatio-temporal computational model of the vertebrate retina, based on the response function for each class of retinal neurons and on the anatomical inter-cellular connections. This model was capable of not only reproducing the spatio-temporal filtering properties of the outer retinal neurons, but also realizing the object segregation mechanism in the inner retinal circuit involving the “wide-field” amacrine cells. Moreover, the first-order Wiener kernels calculated for the neurons in our model showed a reasonable fit to the kernels previously measured in the real retinal neuron in situ.
机译:在先前关于脊椎动物视觉处理的实验研究中,甚至在视网膜阶段也发现了更高阶的视觉功能,例如物体与背景的分离。以前,“线性-非线性”(LN)级联模型已应用于视网膜回路,并成功地描述了回路某些部分的输入输出动力学,例如,外部视网膜神经元的感受野。最近,一些由LN级联组成的抽象模型作为电路元件可以解释高阶视网膜功能。然而,在这样的模型中,大多数类别的视网膜神经元都被省略了,因此,这些神经元如何在视觉计算中发挥作用是无法探索的。在这里,我们基于每类视网膜神经元的响应函数以及解剖学的细胞间连接,提出了脊椎动物视网膜的时空计算模型。该模型不仅能够再现视网膜外神经元的时空滤波特性,而且能够实现涉及“宽视野”无长突细胞的内部视网膜回路中的对象分离机制。而且,在我们的模型中为神经元计算的一阶维纳核显示出与先前在真实视网膜神经元中原位测量的核的合理拟合。

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