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首页> 外文期刊>Neuron >Flow of cortical activity underlying a tactile decision in mice
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Flow of cortical activity underlying a tactile decision in mice

机译:小鼠触觉决定的皮层活动流

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摘要

Perceptual decisions involve distributed cortical activity. Does information flow sequentially from one cortical area to another, or do networks of interconnected areas contribute at the same time? Herewe delineate when and how activity in specific areas drives a whisker-based decision in mice. Ashort-term memory component temporally separated tactile "sensation" and "action" (licking). Using optogenetic inhibition (spatial resolution, 2mm; temporal resolution, 100ms), we surveyed the neocortex for regions driving behavior during specific behavioral epochs. Barrel cortex was critical for sensation. During the short-term memory, unilateral inhibition of anterior lateral motor cortex biased responses to the ipsilateral side. Consistently, barrel cortex showed stimulus-specific activity during sensation, whereas motor cortex showed choice-specific preparatory activity and movement-related activity, consistent with roles in motor planning and movement. These results suggest serial information flow from sensory to motor areas during perceptual decision making.
机译:感知决策涉及分布式皮质活动。信息是从一个皮质区域顺次流向另一个皮质区域,还是互连区域的网络同时起作用?在此,我们描述了何时以及如何在特定区域进行活动来驱动小鼠基于晶须的决定。短期记忆成分在时间上将触觉“感觉”和“动作”(舔)分开。使用光遗传学抑制(空间分辨率,2mm;时间分辨率,100ms),我们调查了新皮层在特定行为时期驱动行为的区域。桶状皮质对于感觉至关重要。在短期记忆期间,单侧抑制前外侧运动皮层会使对同侧的反应偏向。一致地,桶状皮层在感觉过程中显示出特定刺激的活动,而运动皮层显示出与选择有关的准备活动和与运动有关的活动,这与运动计划和运动中的作用一致。这些结果表明,在感知决策过程中,串行信息从感觉区域流向运动区域。

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