Neural correlates of memory in a naturalistic spatiotemporal context.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Matthew R Dougherty, Woohyeuk Chang, Joseph H Rudoler, Brandon S Katerman, David J Halpern, James P Bruska, Nicholas B Diamond, Michael J Kahana
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Abstract

We investigated memory encoding and retrieval during a quasinaturalistic spatial-episodic memory task in which subjects delivered items to landmarks in a desktop virtual environment and later recalled the delivered items. Transition probabilities and latencies revealed the spatial and temporal organization of memory. As subjects gained experience with the town, their improved spatial knowledge led to more efficient navigation and increased spatial organization during recall. Subjects who exhibited stronger spatial organization exhibited weaker temporal organization. Scalp-recorded electroencephalographic signals revealed spectral correlates of successful encoding and retrieval. Increased theta power (T+) and decreased alpha/beta power (A-) accompanied successful encoding, with the addition of increased gamma (G+) accompanying successful retrieval. Logistic regression classifiers trained on spectral features reliably predicted mnemonic success in held-out sessions. Univariate and multivariate electroencephalographic analyses revealed a similar spectral T+A-G+ of successful memory. These findings extend behavioral and neural signatures of successful encoding and retrieval to a naturalistic task in which learning occurs within a spatiotemporal context. (PsycInfo Database Record (c) 2024 APA, all rights reserved).

自然时空背景下记忆的神经相关性。
我们研究了受试者在准自然主义空间外显记忆任务中进行记忆编码和检索的过程,在该任务中,受试者将物品送到桌面虚拟环境中的地标,随后再回忆已送达的物品。转换概率和延迟揭示了记忆的空间和时间组织。随着受试者在城镇中积累经验,他们的空间知识得到了提高,从而提高了导航效率,并在回忆过程中增强了空间组织能力。空间组织能力较强的受试者的时间组织能力较弱。头皮记录的脑电信号显示了成功编码和检索的频谱相关性。θ功率(T+)增加和α/β功率(A-)降低伴随着编码的成功,另外伽马(G+)增加也伴随着检索的成功。根据频谱特征训练的逻辑回归分类器能可靠地预测保持记忆过程中的记忆成功率。单变量和多变量脑电图分析显示,成功记忆的频谱T+A-G+相似。这些发现将成功编码和检索的行为和神经特征扩展到了在时空背景下进行学习的自然任务中。(PsycInfo Database Record (c) 2024 APA,保留所有权利)。
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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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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