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首页> 外文期刊>Nature neuroscience >Single-cell activity tracking reveals that orbitofrontal neurons acquire and maintain a long-term memory to guide behavioral adaptation
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Single-cell activity tracking reveals that orbitofrontal neurons acquire and maintain a long-term memory to guide behavioral adaptation

机译:单细胞活动跟踪显示胰胰胰甘露糖神经元获取并保持长期内存以引导行为适应

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Learning to predict rewards based on environmental cues is essential for survival. The orbitofrontal cortex (OFC) contributes to such learning by conveying reward-related information to brain areas such as the ventral tegmental area (VTA). Despite this, how cue-reward memory representations form in individual OFC neurons and are modified based on new information is unknown. To address this, using in vivo two-photon calcium imaging in mice, we tracked the response evolution of thousands of OFC output neurons, including those projecting to VTA, through multiple days and stages of cue-reward learning. Collectively, we show that OFC contains several functional clusters of neurons distinctly encoding cue-reward memory representations, with only select responses routed downstream to VTA. Unexpectedly, these representations were stably maintained by the same neurons even after extinction of the cue-reward pairing, and supported behavioral learning and memory. Thus, OFC neuronal activity represents a long-term cue-reward associative memory to support behavioral adaptation.
机译:学习基于环境暗示预测奖励对于生存至关重要。通过将奖励相关信息传达给脑区域(如腹侧腹部区域(VTA)),替代胰胰胰氧化物皮质(OFC)有助于这种学习。尽管如此,Cue-redge记忆陈述如何在各个神经元中形成,并根据新信息进行修改。为了解决这一点,在小鼠中使用体内两光粒钙成像,我们跟踪了数千个OFC输出神经元的响应演变,包括将VTA投影的那些,通过多久和奖励学习的阶段。统称,我们表明,OFC包含明显编码CUE奖励内存表示的几个神经元功能簇,只能选择响应下游到VTA。出乎意料地,即使在CUE奖励配对和支持的行为学习和记忆中,这些表示也稳定地维持了同一神经元。因此,OFC神经元活动代表了一个长期的CUE奖励关联记忆,以支持行为适应。

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