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Contrast gain control and horizontal interactions in V1: A DCM study

机译:V1中的对比度增益控制和水平交互作用:DCM研究

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摘要

Using high-density electrocorticographic recordings – from awake-behaving monkeys – and dynamic causal modelling, we characterised contrast dependent gain control in visual cortex, in terms of synaptic rate constants and intrinsic connectivity. Specifically, we used neural field models to quantify the balance of excitatory and inhibitory influences; both in terms of the strength and spatial dispersion of horizontal intrinsic connections. Our results allow us to infer that increasing contrast increases the sensitivity or gain of superficial pyramidal cells to inputs from spiny stellate populations. Furthermore, changes in the effective spatial extent of horizontal coupling nuance the spatiotemporal filtering properties of cortical laminae in V1 — effectively preserving higher spatial frequencies. These results are consistent with recent non-invasive human studies of contrast dependent changes in the gain of pyramidal cells elaborating forward connections — studies designed to test specific hypotheses about precision and gain control based on predictive coding. Furthermore, they are consistent with established results showing that the receptive fields of V1 units shrink with increasing visual contrast.
机译:我们使用高密度脑电图记录(来自清醒的猴子)和动态因果模型,以突触速率常数和内在连通性为特征,对视觉皮层中依赖对比度的增益控制进行了表征。具体来说,我们使用神经场模型来量化兴奋性和抑制性影响之间的平衡。水平内在联系的强度和空间分散性方面。我们的结果使我们可以推断出,对比度的增加会增加浅锥体细胞对多刺星状种群输入的敏感性或增益。此外,水平耦合有效空间范围的变化细化了V1中皮层的时空滤波特性-有效地保留了较高的空间频率。这些结果与最近的非侵入性人类研究有关,这些研究对形成前向连接的锥体细胞增益的对比度依赖性变化进行了研究-这些研究旨在测试基于预测编码的有关精度和增益控制的特定假设。此外,它们与已证实的结果一致,该结果表明V1单位的感受野会随着视觉对比度的增加而缩小。

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