Load effects on spatial working memory performance are linked to distributed alpha and beta oscillations

脑磁图 阿尔法(金融) 工作记忆 BETA(编程语言) 任务(项目管理) 大脑活动与冥想 前额叶皮质 神经科学 体素 心理学 脑电图 计算机科学 认知 发展心理学 人工智能 工程类 心理测量学 程序设计语言 系统工程 结构效度
作者
Amy L. Proskovec,Alex I. Wiesman,Elizabeth Heinrichs‐Graham,Tony W. Wilson
出处
期刊:Human Brain Mapping [Wiley]
卷期号:40 (12): 3682-3689 被引量:37
标识
DOI:10.1002/hbm.24625
摘要

Abstract Increasing spatial working memory (SWM) load is generally associated with declines in behavioral performance, but the neural correlates of load‐related behavioral effects remain poorly understood. Herein, we examine the alterations in oscillatory activity that accompany such performance changes in 22 healthy adults who performed a two‐ and four‐load SWM task during magnetoencephalography (MEG). All MEG data were transformed into the time‐frequency domain and significant oscillatory responses were imaged separately per load using a beamformer. Whole‐brain correlation maps were computed using the load‐related beamformer difference images and load‐related accuracy effects on the SWM task. The results indicated that load‐related differences in left inferior frontal alpha activity during encoding and maintenance were negatively correlated with load‐related accuracy differences on the SWM task. That is, individuals who had more substantial decreases in prefrontal alpha during high‐relative to low‐load SWM trials tended to have smaller performance decrements on the high‐load condition (i.e., they performed more accurately). The same pattern of neurobehavioral correlations was observed during the maintenance period for right superior temporal alpha activity and right superior parietal beta activity. Importantly, this is the first study to employ a voxel‐wise whole‐brain approach to significantly link load‐related oscillatory differences and load‐related SWM performance differences.

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