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Extended difference-of-Gaussians model incorporating cortical feedback for relay cells in the lateral geniculate nucleus of cat

机译:结合皮质反馈的扩展高斯差分模型在猫外侧膝状核中的中继细胞

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摘要

A striking feature of the organization of the early visual pathway is the significant feedback from primary visual cortex to cells in the dorsal lateral geniculate nucleus (LGN). Despite numerous experimental and modeling studies, the functional role for this feedback remains elusive. We present a new firing-rate-based model for LGN relay cells in cat, explicitly accounting for thalamocortical loop effects. The established DOG model, here assumed to account for the spatial aspects of the feedforward processing of visual stimuli, is extended to incorporate the influence of thalamocortical loops including a full set of orientation-selective cortical cell populations. Assuming a phase-reversed push-pull arrangement of ON and OFF cortical feedback as seen experimentally, this extended DOG (eDOG) model exhibits linear firing properties despite non-linear firing characteristics of the corticothalamic cells. The spatiotemporal receptive field of the eDOG model has a simple algebraic structure in Fourier space, while the real-space receptive field, as well as responses to visual stimuli, are found by evaluation of an integral. As an example application we use the eDOG model to study effects of cortical feedback on responses to flashing circular spots and patch-grating stimuli and find that the eDOG model can qualitatively account for experimental findings.
机译:早期视觉通路组织的显着特征是从初级视觉皮层到背外侧膝状核(LGN)细胞的显着反馈。尽管进行了大量的实验和建模研究,但是对于这种反馈的功能作用仍然难以捉摸。我们提出了一种新的基于发射速率的猫LGN中继细胞模型,明确考虑了丘脑皮层环路效应。建立的DOG模型(此处假设考虑了视觉刺激的前馈处理的空间方面)被扩展为合并丘脑皮质环的影响,丘脑皮质环的影响包括一整套方向选择性皮质细胞群。假设通过实验观察到,ON和OFF皮质反馈的相位反转推挽式布置,尽管皮质类丘脑细胞具有非线性激发特性,但这种扩展的DOG(eDOG)模型仍具有线性激发特性。 eDOG模型的时空接受域在傅立叶空间中具有简单的代数结构,而真实空间的接受域以及对视觉刺激的响应是通过对积分的评估而发现的。作为示例应用程序,我们使用eDOG模型研究皮质反馈对闪烁的圆形斑点和斑片光栅刺激的响应的影响,并发现eDOG模型可以定性地解释实验结果。

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