详细情景记忆依赖于海马后部和早期视觉皮层内基本视觉特征的同步再激活。

Cerebral cortex communications Pub Date : 2021-07-16 eCollection Date: 2021-01-01 DOI:10.1093/texcom/tgab045
Michael B Bone, Bradley R Buchsbaum
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引用次数: 10

摘要

海马体是大脑中储存和提取情景记忆的关键区域,但它是如何发挥这一功能的尚不清楚。主流理论认为,海马体存储了在感知过程中发生的新皮层活动模式的稀疏表征或“指数”。在检索过程中,部分线索对索引的再激活促进了相关新皮层模式的再激活。因此,情景检索需要海马指数和相关的新皮层网络的联合再激活。为了验证这一理论,我们研究了在需要检索图像特定视觉细节的识别记忆任务中的表现与海马体和新皮层中特征特异性再激活之间的关系。我们发现,对于具有高识别诱饵准确性的参与者,一次次的识别准确性与海马后部和早期视觉皮层内低水平特征(如亮度和边缘)的神经再激活相关。正如预测的那样,这两个区域相互作用,因此只有当再激活在早期视觉皮层内同时发生时,识别准确性才与海马再激活相关(反之亦然)。除了支持海马体功能的主流理论外,我们的研究结果还表明,视觉记忆的基本特征存在很大的个体差异,并表明海马体的前部和后部分别代表了gist样和详细的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Detailed Episodic Memory Depends on Concurrent Reactivation of Basic Visual Features within the Posterior Hippocampus and Early Visual Cortex.

The hippocampus is a key brain region for the storage and retrieval of episodic memories, but how it performs this function is unresolved. Leading theories posit that the hippocampus stores a sparse representation, or "index," of the pattern of neocortical activity that occurred during perception. During retrieval, reactivation of the index by a partial cue facilitates the reactivation of the associated neocortical pattern. Therefore, episodic retrieval requires joint reactivation of the hippocampal index and the associated neocortical networks. To test this theory, we examine the relation between performance on a recognition memory task requiring retrieval of image-specific visual details and feature-specific reactivation within the hippocampus and neocortex. We show that trial-by-trial recognition accuracy correlates with neural reactivation of low-level features (e.g., luminosity and edges) within the posterior hippocampus and early visual cortex for participants with high recognition lure accuracy. As predicted, the two regions interact, such that recognition accuracy correlates with hippocampal reactivation only when reactivation co-occurs within the early visual cortex (and vice versa). In addition to supporting leading theories of hippocampal function, our findings show large individual differences in the features underlying visual memory and suggest that the anterior and posterior hippocampus represents gist-like and detailed features, respectively.

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