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Neurons with inverted tuning during the delay periods of working memory tasks in the dorsal prefrontal and posterior parietal cortex

机译:背前额叶和顶叶后皮质工作记忆任务延迟期间内倒置调节的神经元

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摘要

The dorsolateral prefrontal and posterior parietal cortices are two interconnected brain areas that are coactivated in tasks involving functions such as spatial attention and working memory. The response properties of neurons in the two areas are in many respects indistinguishable, yet only prefrontal neurons are able to resist interference by distracting stimuli when subjects are required to remember an initial stimulus. Several mechanisms have been proposed that could account for this functional difference, including the existence of specialized interneuron types, specific to the prefrontal cortex. Although such neurons with inverted tuning during the delay period of a working memory task have been described in the prefrontal cortex, no comparative data exist from other cortical areas that would establish a unique prefrontal role. To test this hypothesis, we analyzed a large database of recordings obtained in the dorsolateral prefrontal and posterior parietal cortex of the same monkeys as they performed working memory tasks. We found that in the prefrontal cortex, neurons with inverted tuning were more numerous and manifested unique properties. Our results give credence to the idea that a division of labor exists between separate neuron types in the prefrontal cortex and that this represents a functional specialization that is not present in its cortical afferents.
机译:背外侧前额叶和顶叶皮质是两个相互连接的大脑区域,在涉及诸如空间注意力和工作记忆等功能的任务中被共同激活。这两个区域中神经元的反应特性在许多方面都无法区分,但是当需要受试者记住初始刺激时,只有前额叶神经元能够通过分散刺激来抵抗干扰。已经提出了几种机制来解释这种功能差异,包括存在特定于前额叶皮层的特殊中间神经元类型。尽管在前额叶皮层中已经描述了在工作记忆任务的延迟期间具有反向调谐的此类神经元,但尚无来自其他皮质区域的可用于建立独特的前额叶作用的比较数据。为了验证该假设,我们分析了一个大型的记录数据库,这些记录是在执行工作记忆任务的同一只猴子的背外侧前额叶和顶叶后皮质中获得的。我们发现在前额叶皮层中,具有反向调谐的神经元数量更多,并且表现出独特的特性。我们的研究结果证明了前额叶皮层中不同神经元类型之间存在分工,并且这代表了其皮层传入神经中不存在的功能专长。

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