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Saccadic modulation of stimulus processing in primary visual cortex

机译:初级视觉皮层刺激处理的Saccadic调制。

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Saccadic eye movements play a central role in primate vision. Yet, relatively little is known about their effects on the neural processing of visual inputs. Here we examine this question in primary visual cortex (V1) using receptive-field-based models, combined with an experimental design that leaves the retinal stimulus unaffected by saccades. This approach allows us to analyse V1 stimulus processing during saccades with unprecedented detail, revealing robust perisaccadic modulation. In particular, saccades produce biphasic firing rate changes that are composed of divisive gain suppression followed by an additive rate increase. Microsaccades produce similar, though smaller, modulations. We furthermore demonstrate that this modulation is likely inherited from the LGN, and is driven largely by extra-retinal signals. These results establish a foundation for integrating saccades into existing models of visual cortical stimulus processing, and highlight the importance of studying visual neuron function in the context of eye movements.
机译:眼球跳动在灵长类动物视觉中起着核心作用。然而,关于它们对视觉输入的神经处理的影响知之甚少。在这里,我们使用基于感受野的模型在初级视觉皮层(V1)中研究了这个问题,并结合了实验设计,使视网膜刺激不受扫视的影响。这种方法使我们能够以前所未有的细节分析扫视过程中的V1刺激过程,从而揭示了可靠的周六调制。尤其是,扫视产生双相点火速率变化,该变化由分裂增益抑制和附加速率增加组成。微扫视产生相似但较小的调制。我们进一步证明,这种调制可能是从LGN继承的,并且很大程度上是由视网膜外信号驱动的。这些结果为将扫视镜整合到视觉皮层刺激处理的现有模型中奠定了基础,并强调了在眼球运动的背景下研究视觉神经元功能的重要性。

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