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视觉工作记忆负荷相关的神经活动和功能连接变化。

Visual working memory load-related changes in neural activity and functional connectivity.

机构信息

Key Laboratory for NeuroInformation of Ministry of Education, School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu, China.

出版信息

PLoS One. 2011;6(7):e22357. doi: 10.1371/journal.pone.0022357. Epub 2011 Jul 18.

Abstract

BACKGROUND

Visual working memory (VWM) helps us store visual information to prepare for subsequent behavior. The neuronal mechanisms for sustaining coherent visual information and the mechanisms for limited VWM capacity have remained uncharacterized. Although numerous studies have utilized behavioral accuracy, neural activity, and connectivity to explore the mechanism of VWM retention, little is known about the load-related changes in functional connectivity for hemi-field VWM retention.

METHODOLOGY/PRINCIPAL FINDINGS: In this study, we recorded electroencephalography (EEG) from 14 normal young adults while they performed a bilateral visual field memory task. Subjects had more rapid and accurate responses to the left visual field (LVF) memory condition. The difference in mean amplitude between the ipsilateral and contralateral event-related potential (ERP) at parietal-occipital electrodes in retention interval period was obtained with six different memory loads. Functional connectivity between 128 scalp regions was measured by EEG phase synchronization in the theta- (4-8 Hz), alpha- (8-12 Hz), beta- (12-32 Hz), and gamma- (32-40 Hz) frequency bands. The resulting matrices were converted to graphs, and mean degree, clustering coefficient and shortest path length was computed as a function of memory load. The results showed that brain networks of theta-, alpha-, beta-, and gamma- frequency bands were load-dependent and visual-field dependent. The networks of theta- and alpha- bands phase synchrony were most predominant in retention period for right visual field (RVF) WM than for LVF WM. Furthermore, only for RVF memory condition, brain network density of theta-band during the retention interval were linked to the delay of behavior reaction time, and the topological property of alpha-band network was negative correlation with behavior accuracy.

CONCLUSIONS/SIGNIFICANCE: We suggest that the differences in theta- and alpha- bands between LVF and RVF conditions in functional connectivity and topological properties during retention period may result in the decline of behavioral performance in RVF task.

摘要

背景

视觉工作记忆(VWM)有助于我们存储视觉信息,为后续行为做准备。维持连贯视觉信息的神经元机制和有限的 VWM 容量机制仍未被描述。尽管许多研究利用行为准确性、神经活动和连通性来探索 VWM 保持的机制,但对于半视野 VWM 保持的功能连通性的负载相关变化知之甚少。

方法/主要发现:在这项研究中,我们记录了 14 名正常年轻成年人在执行双侧视觉场记忆任务时的脑电图(EEG)。被试者对左视觉场(LVF)记忆条件的反应更快更准确。在保留间隔期,从顶枕部电极获得 6 种不同记忆负荷时同侧和对侧事件相关电位(ERP)之间的平均振幅差。通过 EEG 相位同步测量 128 个头皮区域之间的功能连接,在 theta-(4-8 Hz)、alpha-(8-12 Hz)、beta-(12-32 Hz)和 gamma-(32-40 Hz)频带中。将得到的矩阵转换为图,并作为记忆负荷的函数计算平均度、聚类系数和最短路径长度。结果表明,theta-、alpha-、beta-和 gamma-频带的脑网络是负载依赖和视野依赖的。在 RVF WM 比在 LVF WM 中,theta-和 alpha-频带网络的相位同步在保留期最为明显。此外,仅对于 RVF 记忆条件,保留间隔期 theta 频带的脑网络密度与行为反应时间延迟有关,alpha 频带网络的拓扑性质与行为准确性呈负相关。

结论/意义:我们认为,在保留期内,功能连接和拓扑性质中 LVF 和 RVF 条件之间的 theta-和 alpha-频带的差异可能导致 RVF 任务中行为表现的下降。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afe9/3138779/4378b89de1fa/pone.0022357.g001.jpg

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