首页> 美国卫生研究院文献>The Journal of Neuroscience >Audiovisual Modulation in Mouse Primary Visual Cortex Depends on Cross-Modal Stimulus Configuration and Congruency
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Audiovisual Modulation in Mouse Primary Visual Cortex Depends on Cross-Modal Stimulus Configuration and Congruency

机译:鼠标主视觉皮层中的视听调制取决于跨模态的刺激配置和一致性。

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摘要

The sensory neocortex is a highly connected associative network that integrates information from multiple senses, even at the level of the primary sensory areas. Although a growing body of empirical evidence supports this view, the neural mechanisms of cross-modal integration in primary sensory areas, such as the primary visual cortex (V1), are still largely unknown. Using two-photon calcium imaging in awake mice, we show that the encoding of audiovisual stimuli in V1 neuronal populations is highly dependent on the features of the stimulus constituents. When the visual and auditory stimulus features were modulated at the same rate (i.e., temporally congruent), neurons responded with either an enhancement or suppression compared with unisensory visual stimuli, and their prevalence was balanced. Temporally incongruent tones or white-noise bursts included in audiovisual stimulus pairs resulted in predominant response suppression across the neuronal population. Visual contrast did not influence multisensory processing when the audiovisual stimulus pairs were congruent; however, when white-noise bursts were used, neurons generally showed response suppression when the visual stimulus contrast was high whereas this effect was absent when the visual contrast was low. Furthermore, a small fraction of V1 neurons, predominantly those located near the lateral border of V1, responded to sound alone. These results show that V1 is involved in the encoding of cross-modal interactions in a more versatile way than previously thought.>SIGNIFICANCE STATEMENT The neural substrate of cross-modal integration is not limited to specialized cortical association areas but extends to primary sensory areas. Using two-photon imaging of large groups of neurons, we show that multisensory modulation of V1 populations is strongly determined by the individual and shared features of cross-modal stimulus constituents, such as contrast, frequency, congruency, and temporal structure. Congruent audiovisual stimulation resulted in a balanced pattern of response enhancement and suppression compared with unisensory visual stimuli, whereas incongruent or dissimilar stimuli at full contrast gave rise to a population dominated by response-suppressing neurons. Our results indicate that V1 dynamically integrates nonvisual sources of information while still attributing most of its resources to coding visual information.
机译:感觉新皮层是一个高度连接的关联网络,可以集成来自多个感官的信息,即使在主要感觉区域也是如此。尽管越来越多的经验证据支持这种观点,但是在主要的感觉区域(例如主要的视觉皮层(V1))中,跨模式整合的神经机制仍然未知。在清醒的小鼠中使用双光子钙成像,我们显示V1神经元群体中视听刺激的编码高度依赖于刺激成分的特征。当视觉和听觉刺激特征以相同的速率(即时间上一致)进行调节时,与单感觉视觉刺激相比,神经元的反应有所增强或抑制,并且它们的患病率是平衡的。视听刺激对中包含暂时不一致的音调或白噪声爆发,导致整个神经元群体的反应抑制显着。当视听刺激对完全一致时,视觉对比不影响多感觉处理。然而,当使用白噪声爆发时,当视觉刺激对比度较高时,神经元通常显示出抑制反应,而当视觉对比度较低时则没有这种作用。此外,一小部分的V1神经元(主要是位于V1侧边界附近的神经元)对声音本身有反应。这些结果表明,V1以比以前认为的更为通用的方式参与了跨模态相互作用的编码。>意义声明跨模态整合的神经基质不仅限于专门的皮层缔合区域,还包括扩展到主要的感觉区域。使用大群神经元的双光子成像,我们显示V1群体的多感官调制强烈取决于交叉模式刺激成分的个体和共享特征,例如对比度,频率,一致性和时间结构。与单感觉视觉刺激相比,一致的视听刺激导致响应增强和抑制的平衡模式,而在完全对比下不一致或不相似的刺激则导致了以抑制反应的神经元为主的群体。我们的结果表明,V1动态集成了非视觉信息源,同时仍将其大部分资源归功于视觉信息编码。

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