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认知距离编码的、、和记忆检索的域泛型和域特定电生理标志物。

Domain-General and Domain-Specific Electrophysiological Markers of Cognitive Distance Coding for , , and Memory Retrieval.

机构信息

Department of Brain and Cognitive Sciences, Seoul National University, Seoul, 08826, Republic of Korea.

Research Institute of Basic Sciences, Seoul National University, Seoul, 08826, Republic of Korea.

出版信息

J Neurosci. 2023 Jun 7;43(23):4304-4314. doi: 10.1523/JNEUROSCI.0261-23.2023. Epub 2023 May 3.

Abstract

The , , and components of episodic memory can be differentiated based on their distinctive domain-specific underlying neural correlates. However, recent studies have proposed that a common neural mechanism of conceptual mapping may be involved in the coding of cognitive distance across all domains. In this study, we provide evidence that both domain-specific and domain-general processes occur simultaneously during memory retrieval by identifying distinctive and common neural representations for mapping (i.e., semantic distance), (i.e., spatial distance), and (i.e., temporal distance) using scalp EEG from 47 healthy participants (age 21-30, 26 male and 21 female). First, we found that all three components commonly showed a positive correlation between cognitive distance and slow theta power (2.5-5 Hz) in parietal channels. Meanwhile, fast theta power (5-8.5 Hz) specifically represented spatial and temporal distance in occipital and parietal channels, respectively. Additionally, we identified a unique correlate of temporal distance coding in frontal/parietal slow theta power during the early phase of retrieval. All of the above neural markers of cognitive mapping, both domain-general and specific, were associated with individual differences in memory accuracy. The Cognitive Map Theory was originally founded to explain how we remember and organize the immense amount of spatial information that we face when we navigate. However, memory research has recently trended in the direction of emphasizing the generalizability of cognitive mapping mechanisms to information in any domain, represented as distances in an abstract conceptual space. In a single study, we show that both common and unique neural coding of semantic distance (i.e., ), spatial distance (i.e., ), and temporal distance (i.e., ) simultaneously support episodic memory retrieval. Our results suggest that our ability to accurately distinguish between memories is achieved through an integration of domain-specific and domain-general neurocognitive mechanisms that work in parallel.

摘要

情景记忆的 、 和 成分可以根据其独特的特定领域的基础神经相关性来区分。然而,最近的研究提出,概念映射的共同神经机制可能涉及所有领域的认知距离的编码。在这项研究中,我们通过识别用于映射的独特和共同的神经表示,为记忆检索过程中同时发生的特定领域和一般领域的过程提供了证据(即语义距离), (即空间距离)和 (即时间距离)使用来自 47 名健康参与者(年龄 21-30 岁,26 名男性和 21 名女性)的头皮 EEG。首先,我们发现所有三个成分都普遍表现出认知距离与顶叶通道中慢 theta 功率(2.5-5 Hz)之间的正相关。同时,快 theta 功率(5-8.5 Hz)分别在枕叶和顶叶通道中专门表示空间和时间距离。此外,我们在检索的早期阶段确定了与时间距离编码相关的独特关联。认知映射的所有这些神经标记物,无论是一般的还是特定的,都与记忆准确性的个体差异相关。认知地图理论最初是为了解释我们如何记忆和组织我们在导航时面临的大量空间信息而建立的。然而,记忆研究最近朝着强调认知映射机制对任何领域信息的通用性的方向发展,这些信息表示为抽象概念空间中的距离。在一项单独的研究中,我们表明,语义距离(即 )、空间距离(即 )和时间距离(即 )的共同和独特的神经编码同时支持情景记忆检索。我们的结果表明,我们准确区分记忆的能力是通过特定领域和一般领域神经认知机制的并行整合实现的。

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