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Contextual modulation of primary visual cortex by auditory signals

机译:听觉信号对初级视觉皮层的情境调节

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Early visual cortex receives non-feedforward input from lateral and top-down connections (Muckli Petro 2013 Curr. Opin. Neurobiol. 23, 195-201. (doi:10.1016/j.conb.2013.01.020)), including long-range projections from auditory areas. Early visual cortex can code for high-level auditory information, with neural patterns representing natural sound stimulation (Vetter et al. 2014 Curr. Biol. 24, 1256-1262. (doi:10.1016/j.cub.2014.04.020)). We discuss a number of questions arising from these findings. What is the adaptive function of bimodal representations in visual cortex? What type of information projects from auditory to visual cortex? What are the anatomical constraints of auditory information in V1, for example, periphery versus fovea, superficial versus deep cortical layers? Is there a putative neural mechanism we can infer from human neuroimaging data and recent theoretical accounts of cortex? We also present data showing we can read out high-level auditory information from the activation patterns of early visual cortex even when visual cortex receives simple visual stimulation, suggesting independent channels for visual and auditory signals in V1. We speculate which cellular mechanisms allow V1 to be contextually modulated by auditory input to facilitate perception, cognition and behaviour. Beyond cortical feedback that facilitates perception, we argue that there is also feedback serving counterfactual processing during imagery, dreaming and mind wandering, which is not relevant for immediate perception but for behaviour and cognition over a longer time frame.
机译:早期视觉皮层接收来自横向和自上而下连接的非前馈输入(Muckli & Petro 2013 Curr.意见。神经生物学。23, 195-201.(doi:10.1016/j.conb.2013.01.020)),包括来自听觉区域的远程投影。早期的视觉皮层可以编码高级听觉信息,其神经模式代表自然声音刺激(Vetter et al. 2014 Curr. Biol. 24, 1256-1262。(doi:10.1016/j.cub.2014.04.020)).我们讨论了这些发现产生的一些问题。视觉皮层中双峰表征的自适应功能是什么?从听觉到视觉皮层投射什么类型的信息?V1 中听觉信息的解剖学限制是什么,例如,外周与中央凹、浅层与深层皮质层?我们是否可以从人类神经影像学数据和最近对皮层的理论描述中推断出一种假定的神经机制?我们还提供的数据表明,即使视觉皮层接受简单的视觉刺激,我们也可以从早期视觉皮层的激活模式中读出高水平的听觉信息,这表明V1中视觉和听觉信号的独立通道。我们推测哪些细胞机制允许 V1 通过听觉输入进行情境调节,以促进感知、认知和行为。除了促进感知的皮层反馈之外,我们认为,在意象、做梦和走神期间,还有用于反事实处理的反馈,这与即时感知无关,而是与较长时间范围内的行为和认知有关。

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