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鼠听觉皮层颗粒下层中的视觉信息。

Visual Information Present in Infragranular Layers of Mouse Auditory Cortex.

机构信息

Coleman Memorial Laboratory.

Neuroscience Graduate Program, and.

出版信息

J Neurosci. 2018 Mar 14;38(11):2854-2862. doi: 10.1523/JNEUROSCI.3102-17.2018. Epub 2018 Feb 13.

Abstract

The cerebral cortex is a major hub for the convergence and integration of signals from across the sensory modalities; sensory cortices, including primary regions, are no exception. Here we show that visual stimuli influence neural firing in the auditory cortex of awake male and female mice, using multisite probes to sample single units across multiple cortical layers. We demonstrate that visual stimuli influence firing in both primary and secondary auditory cortex. We then determine the laminar location of recording sites through electrode track tracing with fluorescent dye and optogenetic identification using layer-specific markers. Spiking responses to visual stimulation occur deep in auditory cortex and are particularly prominent in layer 6. Visual modulation of firing rate occurs more frequently at areas with secondary-like auditory responses than those with primary-like responses. Auditory cortical responses to drifting visual gratings are not orientation-tuned, unlike visual cortex responses. The deepest cortical layers thus appear to be an important locus for cross-modal integration in auditory cortex. The deepest layers of the auditory cortex are often considered its most enigmatic, possessing a wide range of cell morphologies and atypical sensory responses. Here we show that, in mouse auditory cortex, these layers represent a locus of cross-modal convergence, containing many units responsive to visual stimuli. Our results suggest that this visual signal conveys the presence and timing of a stimulus rather than specifics about that stimulus, such as its orientation. These results shed light on both how and what types of cross-modal information is integrated at the earliest stages of sensory cortical processing.

摘要

大脑皮层是来自不同感觉模式的信号汇聚和整合的主要枢纽;感觉皮层也不例外,包括初级区域。在这里,我们使用多通道探针在多个皮层层中采样单个单元,证明了视觉刺激会影响清醒雄性和雌性小鼠的听觉皮层中的神经放电。我们证明视觉刺激会影响初级和次级听觉皮层中的神经放电。然后,我们通过用荧光染料进行电极轨迹追踪,并使用层特异性标记物进行光遗传学鉴定,确定记录位点的层位置。对视觉刺激的尖峰反应发生在听觉皮层的深部,在 6 层中尤为明显。与具有初级样反应的区域相比,具有次级样反应的区域中视觉诱发的放电率变化更为频繁。与视觉皮层反应不同,对漂移视觉光栅的听觉皮层反应没有方向调谐。因此,最深的皮层层似乎是听觉皮层中跨模态整合的重要位置。听觉皮层的最深层通常被认为是其最神秘的部分,具有广泛的细胞形态和非典型的感觉反应。在这里,我们表明,在小鼠听觉皮层中,这些层代表了跨模态汇聚的位置,包含许多对视觉刺激有反应的单元。我们的结果表明,这种视觉信号传递了刺激的存在和时间,而不是关于该刺激的具体信息,例如其方向。这些结果揭示了在感觉皮层处理的最早阶段,跨模态信息是如何以及何种类型被整合的。

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