Neural correlates of a load-dependent decline in visual working memory

Yaju Li, Y. Noguchi
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引用次数: 1

Abstract

Abstract Previous studies have shown that a rate of temporal decline in visual working memory (vWM) highly depends on a number of memory items. When people retain the information of many (≥ 4) stimuli simultaneously, their memory representations are fragile and rapidly degrade within 2–3 s after an offset (called the “competition” among memory items). When a memory load is low (1 or 2 items), in contrast, the fidelity of vWM is preserved for a longer time because focused attention to the small number of items prevents the temporal degradation. In the present study, we explored neural correlates of this load-dependent decline of vWM in the human brain. Using electroencephalography and a classical change-detection task, we recorded neural measures of vWM that have been reported previously, such as the contralateral delay activity (CDA) and a suppression of alpha power (8–12 Hz). Results indicated that the load-dependent decline of vWM was more clearly reflected in the change in power and speed of alpha/beta rhythm than CDA, suggesting a close relationship of those signals to an attention-based preservation of WM fidelity.
视觉工作记忆负荷依赖性衰退的神经关联
以往的研究表明,视觉工作记忆(vWM)的时间下降速度高度依赖于许多记忆项目。当人们同时保留多个(≥4个)刺激信息时,他们的记忆表征是脆弱的,并且在抵消后的2-3秒内迅速退化(称为记忆项目之间的“竞争”)。相反,当内存负载较低(1或2个项目)时,vWM的保真度可以保持较长时间,因为将注意力集中在少量项目上可以防止时间退化。在本研究中,我们探索了人类大脑中vWM负荷依赖性下降的神经相关因素。利用脑电图和经典的变化检测任务,我们记录了之前报道的vWM的神经测量,如对侧延迟活动(CDA)和α功率抑制(8-12 Hz)。结果表明,与CDA相比,vWM的负荷依赖性下降更明显地反映在α / β节奏的功率和速度变化上,这表明这些信号与基于注意的WM保真度保持密切相关。
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