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Long-Range Parallel Processing and Local Recurrent Activity in the Visual Cortex of the Mouse

机译:鼠标的视觉皮层中的远程并行处理和局部循环活动

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摘要

The transfer of visual information from the primary visual cortex (V1) to higher order visual cortices is an essential step in visual processing. However, the dynamics of activation of visual cortices is poorly understood. In mice, several extrastriate areas surrounding V1 have been described. Using voltage-sensitive dye imaging in vivo, we determined the spatiotemporal dynamics of the activity evoked in the visual cortex by simple stimuli. Independently of precise areal boundaries, we found that V1 activation is rapidly followed by the depolarization of three functional groups of higher order visual areas organized retinotopically. After this sequential activation, all four regions were simultaneously active for most of the response. Concomitantly with the parallel processing of the visual input, the activity initiated retinotopically and propagated quickly and isotropically within each region. The size of this activation by local recurrent activity, which extended beyond the initial retinotopic response, was dependent on the intensity of the stimulus. Moreover the difference in the spatiotemporal dynamic of the response to dark and bright stimuli suggested the dominance in the mouse of the ON pathway. Our results suggest that the cortex integrates visual information simultaneously through across-area parallel and within-area serial processing.
机译:将视觉信息从初级视觉皮层(V1)转移到高阶视觉皮层是视觉处理中必不可少的步骤。但是,对视觉皮层激活的动力学了解甚少。在小鼠中,已经描述了V1周围的几个边缘区域。使用体内的电压敏感染料成像,我们确定了通过简单刺激在视觉皮层中诱发的活动的时空动力学。独立于精确的区域边界,我们发现V1激活很快被视网膜表面组织的三个高级视觉区域功能组去极化。在此顺序激活之后,所有四个区域在大多数响应中同时处于活动状态。伴随视觉输入的并行处理,该活动在视网膜区域开始,并在各区域内快速各向同性地传播。局部复发活动的激活程度超出了最初的视网膜反应,这取决于刺激的强度。此外,对暗和亮刺激的响应时空动态的差异表明,ON通路在小鼠中占主导地位。我们的结果表明皮层通过跨区域并行和区域内串行处理同时集成视觉信息。

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