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首页> 外文期刊>Cell Reports >The Impact of Visual Cues, Reward, and Motor Feedback on the Representation of Behaviorally Relevant Spatial Locations in Primary Visual Cortex
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The Impact of Visual Cues, Reward, and Motor Feedback on the Representation of Behaviorally Relevant Spatial Locations in Primary Visual Cortex

机译:视觉提示,奖励和运动反馈对初级视觉皮层中行为相关的空间位置表示的影响

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Summary The integration of visual stimuli and motor feedback is critical for successful visually guided navigation. These signals have been shown to shape neuronal activity in the primary visual cortex (V1), in an experience-dependent manner. Here, we examined whether visual, reward, and self-motion-related inputs are integrated in order to encode behaviorally relevant locations in V1 neurons. Using a behavioral task in a virtual environment, we monitored layer 2/3 neuronal activity as mice learned to locate a reward along a linear corridor. With learning, a subset of neurons became responsive to the expected reward location. Without a visual cue to the reward location, both behavioral and neuronal responses relied on self-motion-derived estimations. However, when visual cues were available, both neuronal and behavioral responses were driven by visual information. Therefore, a population of V1 neurons encode behaviorally relevant spatial locations, based on either visual cues or on self-motion feedback when visual cues are absent.
机译:总结视觉刺激和运动反馈的集成对于成功的视觉引导导航至关重要。这些信号已显示以经验依赖的方式塑造初级视觉皮层(V1)中的神经元活动。在这里,我们检查了是否整合了视觉,奖励和与自我运动有关的输入,以便对V1神经元中行为相关的位置进行编码。在虚拟环境中使用行为任务,当小鼠学会沿线性走廊定位奖励时,我们监视了第2/3层神经元活动。通过学习,一部分神经元开始对预期的奖励位置做出反应。在没有视觉提示奖励位置的情况下,行为和神经元反应都依赖于自运动得出的估计。但是,当视觉提示可用时,神经元和行为反应都是由视觉信息驱动的。因此,一群V1神经元会根据视觉提示或缺乏视觉提示时的自我运动反馈来编码行为相关的空间位置。

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