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Stimulus-dependent EEG activity reflects internal updating of tactile working memory in humans

机译:依赖刺激的脑电活动反映了人类触觉工作记忆的内部更新

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摘要

Despite recent advances in uncovering the neural signature of tactile working memory processing in animals and humans, the representation of internally modified somatosensory working memory content has not been studied so far. Here, recording EEG in human participants (n = 25) performing a modified delayed match-to-sample task allowed us to disambiguate internally driven memory processing from encoding-related delay activity. After presentation of two distinct vibrotactile frequencies to different index fingers, a visual cue indicated which of the two previous stimuli had to be maintained in working memory throughout a retention interval for subsequent frequency discrimination against a probe stimulus. During cued stimulus maintenance, α activity (8–13 Hz) over early somatosensory cortices was lateralized according to the cued tactile stimulus, even though the location of the stimuli was task irrelevant. The task-relevant memory content, in contrast, was found to be represented in right prefrontal cortex. The key finding was that the visually presented instructions triggered systematic modulations of prefrontal β-band activity (20–25 Hz), which selectively reflected the to-be-maintained frequency of the cued tactile vibration. The results expand previous evidence for parametric representations of vibrotactile frequency in the prefrontal cortex and corroborate a central role of dynamic β-band synchronization during active processing of an analog stimulus quantity in human working memory. In particular, our findings suggest that such processing supports not only sustained maintenance but also purposeful modification and updating of the task-relevant working memory contents.
机译:尽管最近在发现动物和人类的触觉工作记忆处理的神经特征方面取得了进展,但迄今为止尚未研究内部修饰的体感工作记忆内容的表示。在这里,在执行修改后的延迟匹配样本任务的人类参与者(n = 25)中记录脑电图使我们能够将内部驱动的内存处理与编码相关的延迟活动区分开。在将两个不同的触觉频率呈现给不同的食指后,视觉提示表明在整个保留间隔中必须将两个先前刺激中的哪个刺激保持在工作记忆中,以便随后针对探针刺激进行频率辨别。在提示刺激维持期间,尽管提示的位置与任务无关,但根据提示的触觉刺激,早期体感皮质的α活性(8-13 Hz)被侧向化。相比之下,与任务相关的记忆内容被发现在右前额叶皮层中。关键发现是视觉呈现的指令触发了额叶前额叶带活动性的系统调制(20-25 Hz),选择性地反映了暗示的触觉振动的频率。该结果扩展了前额叶皮层中触觉频率的参数表示的先前证据,并证实了在主动处理人类工作记忆中的模拟刺激量过程中动态β波段同步的中心作用。特别地,我们的发现表明,这种处理不仅支持持续维护,而且还支持与任务相关的工作内存内容的有目的修改和更新。

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