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Phase-dependent neuronal coding of objects in short-term memory

机译:短期记忆中物体的相位依赖神经元编码

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摘要

The ability to hold multiple objects in memory is fundamental to intelligent behavior, but its neural basis remains poorly understood. It has been suggested that multiple items may be held in memory by oscillatory activity across neuronal populations, but yet there is little direct evidence. Here, we show that neuronal information about two objects held in short-term memory is enhanced at specific phases of underlying oscillatory population activity. We recorded neuronal activity from the prefrontal cortices of monkeys remembering two visual objects over a brief interval. We found that during this memory interval prefrontal population activity was rhythmically synchronized at frequencies around 32 and 3 Hz and that spikes carried the most information about the memorized objects at specific phases. Further, according to their order of presentation, optimal encoding of the first presented object was significantly earlier in the 32 Hz cycle than that for the second object. Our results suggest that oscillatory neuronal synchronization mediates a phase-dependent coding of memorized objects in the prefrontal cortex. Encoding at distinct phases may play a role for disambiguating information about multiple objects in short-term memory.
机译:在内存中保存多个对象的能力是智能行为的基础,但其神经基础仍然知之甚少。已经提出,通过跨神经元群体的振荡活动可以将多个项目保留在记忆中,但是尚无直接证据。在这里,我们表明有关在短期记忆中保持的两个对象的神经元信息在潜在的振荡种群活动的特定阶段得到了增强。我们记录了猴子的额叶皮层的神经元活动,在短暂的间隔内记住了两个视觉对象。我们发现在此记忆间隔中,前额叶种群活动在32和3 Hz左右的频率上有节奏地同步,并且尖峰在特定阶段携带有关记忆对象的最多信息。此外,根据它们的呈现顺序,第一个呈现对象的最佳编码在32 Hz周期中比第二个对象的编码早得多。我们的结果表明,振荡神经元同步介导前额叶皮层中记忆对象的相位相关编码。在不同阶段进行编码可能会消除短期记忆中有关多个对象的信息的歧义。

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