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纯音调节初级视皮层中朝向和方向的表示。

Pure tones modulate the representation of orientation and direction in the primary visual cortex.

机构信息

Center for Molecular and Behavioral Neuroscience, Rutgers University-Newark, Newark, New Jersey.

出版信息

J Neurophysiol. 2019 Jun 1;121(6):2202-2214. doi: 10.1152/jn.00069.2019. Epub 2019 Apr 10.

Abstract

Multimodal sensory integration facilitates the generation of a unified and coherent perception of the environment. It is now well established that unimodal sensory perceptions, such as vision, are improved in multisensory contexts. Whereas multimodal integration is primarily performed by dedicated multisensory brain regions such as the association cortices or the superior colliculus, recent studies have shown that multisensory interactions also occur in primary sensory cortices. In particular, sounds were shown to modulate the responses of neurons located in layers 2/3 (L2/3) of the mouse primary visual cortex (V1). Yet, the net effect of sound modulation at the V1 population level remained unclear. In the present study, we performed two-photon calcium imaging in awake mice to compare the representation of the orientation and the direction of drifting gratings by V1 L2/3 neurons in unimodal (visual only) or multimodal (audiovisual) conditions. We found that sound modulation depended on the tuning properties (orientation and direction selectivity) and response amplitudes of V1 L2/3 neurons. Sounds potentiated the responses of neurons that were highly tuned to the cue's orientation and direction but weakly active in the unimodal context, following the principle of inverse effectiveness of multimodal integration. Moreover, sound suppressed the responses of neurons untuned for the orientation and/or the direction of the visual cue. Altogether, sound modulation improved the representation of the orientation and direction of the visual stimulus in V1 L2/3. Namely, visual stimuli presented with auditory stimuli recruited a neuronal population better tuned to the visual stimulus orientation and direction than when presented alone. The primary visual cortex (V1) receives direct inputs from the primary auditory cortex. Yet, the impact of sounds on visual processing in V1 remains controverted. We show that the modulation by pure tones of V1 visual responses depends on the orientation selectivity, direction selectivity, and response amplitudes of V1 neurons. Hence, audiovisual stimuli recruit a population of V1 neurons better tuned to the orientation and direction of the visual stimulus than unimodal visual stimuli.

摘要

多模态感觉整合有助于生成对环境的统一和连贯的感知。现在已经证实,单一感觉感知(如视觉)在多感觉环境中得到改善。虽然多模态整合主要由专门的多模态大脑区域(如联合皮层或上丘)执行,但最近的研究表明,多模态相互作用也发生在初级感觉皮层中。特别是,声音被证明可以调节位于小鼠初级视觉皮层(V1)第 2/3 层(L2/3)的神经元的反应。然而,声音调制在 V1 群体水平上的净效应仍然不清楚。在本研究中,我们在清醒小鼠中进行了双光子钙成像,以比较 V1 L2/3 神经元在单模态(仅视觉)或多模态(视听)条件下对漂移光栅的方向和方向的表示。我们发现,声音调制取决于 V1 L2/3 神经元的调谐特性(方向和方向选择性)和反应幅度。根据多模态整合的逆有效性原则,声音增强了对提示方向和方向高度调谐但在单模态环境中反应较弱的神经元的反应。此外,声音抑制了对视觉提示的方向和/或方向不调谐的神经元的反应。总的来说,声音调制改善了 V1 L2/3 中视觉刺激的方向和方向的表示。也就是说,与单独呈现时相比,当与听觉刺激一起呈现时,视觉刺激会招募对视觉刺激方向和方向调谐更好的神经元群体。初级视觉皮层(V1)直接接收来自初级听觉皮层的输入。然而,声音对 V1 中视觉处理的影响仍然存在争议。我们表明,纯音对 V1 视觉反应的调制取决于 V1 神经元的方向选择性、方向选择性和反应幅度。因此,视听刺激会招募对视觉刺激方向和方向调谐更好的 V1 神经元群体,而不是单模态视觉刺激。

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