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Towards understanding of the cortical network underlying associative memory

机译:理解底层联想记忆的皮质网络

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摘要

Declarative knowledge and experiences are represented in the association cortex and are recalled by reactivation of the neural representation. Electrophysiological experiments have revealed that associations between semantically linked visual objects are formed in neural representations in the temporal and limbic cortices. Memory traces are created by the reorganization of neural circuits. These regions are reactivated during retrieval and contribute to the contents of a memory. Two different types of retrieval signals are suggested as follows: automatic and active. One flows backward from the medial temporal lobe during the automatic retrieval process, whereas the other is conveyed as a top-down signal from the prefrontal cortex to the temporal cortex during the active retrieval process. By sending the top-down signal, the prefrontal cortex manipulates and organizes to-be-remembered information, devises strategies for retrieval and monitors the outcome. To further understand the neural mechanism of memory, the following two complementary views are needed: how the multiple cortical areas in the brain-wide network interact to orchestrate cognitive functions and how the properties of single neurons and their synaptic connections with neighbouring neurons combine to form local circuits and to exhibit the function of each cortical area. We will discuss some new methodological innovations that tackle these challenges.
机译:陈述性知识和经验在关联皮层中表示,并通过重新激活神经表示来回忆。电生理实验表明,语义连接的视觉对象之间的关联是在颞和边缘皮质的神经表示中形成的。记忆轨迹是通过神经回路的重组来创建的。这些区域在检索期间会重新激活,并有助于存储内容。建议使用两种不同类型的检索信号:自动和主动。在自动检索过程中,一个从颞颞叶向后流动,而在主动检索过程中,另一个作为自顶向下的信号从前额叶皮层传输到颞叶皮层。通过发送自上而下的信号,前额叶皮层可操纵和组织要记忆的信息,设计检索策略并监测结果。为了进一步理解记忆的神经机制,需要以下两个互补的观点:大脑全网络中的多个皮质区域如何相互作用以协调认知功能,以及单个神经元的特性及其与邻近神经元的突触连接如何结合形成局部回路并展现每个皮质区域的功能。我们将讨论一些应对这些挑战的新方法论创新。

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