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The Role of Pulvinar in the Transmission of Information in the Visual Hierarchy

机译:Pulvinar在视觉层次结构中信息传递中的作用

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摘要

Visual receptive field (RF) attributes in visual cortex of primates have been explained mainly from cortical connections: visual RFs progress from simple to complex through cortico-cortical pathways from lower to higher levels in the visual hierarchy. This feedforward flow of information is paired with top-down processes through the feedback pathway. Although the hierarchical organization explains the spatial properties of RFs, is unclear how a non-linear transmission of activity through the visual hierarchy can yield smooth contrast response functions in all level of the hierarchy. Depending on the gain, non-linear transfer functions create either a bimodal response to contrast, or no contrast dependence of the response in the highest level of the hierarchy. One possible mechanism to regulate this transmission of visual contrast information from low to high level involves an external component that shortcuts the flow of information through the hierarchy. A candidate for this shortcut is the Pulvinar nucleus of the thalamus. To investigate representation of stimulus contrast a hierarchical model network of ten cortical areas is examined. In each level of the network, the activity from the previous layer is integrated and then non-linearly transmitted to the next level. The arrangement of interactions creates a gradient from simple to complex RFs of increasing size as one moves from lower to higher cortical levels. The visual input is modeled as a Gaussian random input, whose width codes for the contrast. This input is applied to the first area. The output activity ratio among different contrast values is analyzed for the last level to observe sensitivity to a contrast and contrast invariant tuning. For a purely cortical system, the output of the last area can be approximately contrast invariant, but the sensitivity to contrast is poor. To account for an alternative visual processing pathway, non-reciprocal connections from and to a parallel pulvinar like structure of nine areas is coupled to the system. Compared to the pure feedforward model, cortico-pulvino-cortical output presents much more sensitivity to contrast and has a similar level of contrast invariance of the tuning.
机译:灵长类动物的视觉皮层中的视觉感受野(RF)属性主要是通过皮质连接来解释的:视觉RF从简单到复杂,通过皮质-皮质途径从视觉层次的低层到高层发展。这种前馈信息流通过反馈路径与自上而下的过程配对。尽管层次结构解释了RF的空间特性,但尚不清楚通过视觉层次结构进行活动的非线性传输如何在层次结构的所有层次上产生平滑的对比度响应功能。取决于增益,非线性传递函数会创建对对比度的双峰响应,或者在层次结构的最高级别中没有响应的对比度依赖关系。调节视觉对比信息从低到高的这种传输的一种可能的机制涉及一个外部组件,该组件可以缩短通过层次结构的信息流。这种捷径的候选人是丘脑的枕骨核。为了研究刺激对比的表示,检查了十个皮质区域的分层模型网络。在网络的每个级别中,来自上一层的活动被集成,然后非线性地传输到下一个级别。当人们从较低的皮层水平移动到较高的皮层水平时,相互作用的排列会形成从简单的RF到复杂的RF的逐渐增加的梯度。可视输入被建模为高斯随机输入,其宽度编码为对比度。此输入将应用于第一个区域。分析不同对比度值之间的输出活动比,直到最后一个水平,以观察对对比度的敏感度和对比度不变调整。对于纯皮层系统,最后一个区域的输出可以近似保持对比度不变,但是对对比度的敏感性很差。为了考虑替代的视觉处理路径,将来自九个区域的平行的类似鼓状结构的双向相互连接到该系统。与纯前馈模型相比,皮质-皮尔维诺-皮层输出对对比度的敏感度更高,并且具有相似水平的对比度不变性。

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