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Luminance but not chromatic visual pathways mediate amplification of conditioned danger signals in human visual cortex

机译:亮度而非彩色视觉通路介导人类视觉皮层中条件危险信号的放大

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摘要

Complex organisms rely on experience to optimize the function of perceptual and motor systems in situations relevant to survival. It is well established that visual cues reliably paired with danger are processed more efficiently than neutral cues and that such facilitated sensory processing extends to low levels of the visual system. The neurophysiological mechanisms mediating biased sensory processing however are not well understood. Here we used grating stimuli specifically designed to engage luminance or chromatic pathways of the human visual system in a differential classical conditioning paradigm. Behavioral ratings and visual electroencephalographic steady-state potentials were recorded in healthy human participants. Our findings indicate that the visuo-cortical response to high spatial frequency, isoluminant (red-green) grating stimuli was not modulated by fear conditioning, but low-contrast, low spatial frequency reversal of grayscale gratings resulted in pronounced conditioning effects. We conclude that sensory input conducted via the chromatic pathways into retinotopic visual cortex has limited access to the bi-directional connectivity with brain networks mediating the acquisition and expression of fear, such as the amygdaloid complex. Conversely, luminance information is necessary to establish amplification of learned danger signals in hierarchically early regions of the visual system.
机译:复杂的生物依靠经验来优化与生存有关的情况下的知觉和运动系统的功能。公认的是,与中性线索相比,可靠地与危险配对的视觉线索的处理效率更高,并且这种便利的感官处理扩展到视觉系统的低水平。调解有偏见的感觉过程的神经生理机制,但是还不是很清楚。在这里,我们使用了特殊设计的光栅刺激,以在差分经典条件范式中参与人类视觉系统的亮度或色度路径。在健康的人类参与者中记录了行为评分和视觉脑电图稳态电位。我们的发现表明,对恐惧空间的调制不会对高空间频率,等光源(红绿色)光栅刺激的视皮层响应进行调制,但是灰度光栅的低对比度,低空间频率反转会导致明显的条件效应。我们得出的结论是,通过色觉通路进入视网膜局部视皮层的感觉输入与介导恐惧的获取和表达的大脑网络(如杏仁状复合体)之间的双向连通性受到限制。相反,亮度信息对于在视觉系统的分层早期区域中建立学习到的危险信号的放大是必不可少的。

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