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Brain Oscillatory Correlates of Visual Short-Term Memory Errors

机译:视觉短期记忆错误的脑震荡相关性。

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摘要

Brain dynamics of memory formation were explored during encoding and retention intervals of a visual working memory task. EEG data were acquired while subjects were exposed to grayscale images of widely known object categories (e.g., “luggage,” “chair,” and “car”). Following a short delay, two probes were shown to test memory accuracy. Oscillatory portraits of successful and erroneous memories were contrasted. Where significant differences were identified, oscillatory traits of false memories (i.e., when a novel probe item of the same category is recognized as familiar) were compared with those of successful and erroneous memories. Spectral analysis revealed theta (6–8 Hz) power over occipital channels for encoding of successful and false memories that was smaller when compared to other types of memory errors. The reduced theta power indicates successful encoding and reflects the efficient activation of the underlying neural assemblies. Prominent alpha-beta (10–26 Hz) activity belonging to the right parieto-occipital channels was identified during the retention interval. It was found to be larger for false memories and errors than that of correctly answered trials. High levels of alpha-beta oscillatory activity for errors correspond to poor maintenance leading to inefficient allocation of WM resources. In case of false memories, this would imply necessary cognitive effort to manage the extra semantic and perceptual load induced by the encoded stimuli.
机译:在视觉工作记忆任务的编码和保留间隔期间探索了记忆形成的大脑动力学。当受试者暴露于广为人知的物体类别(例如“行李”,“椅子”和“汽车”)的灰度图像时,获取了EEG数据。经过短暂的延迟后,显示了两个探针来测试内存准确性。比较了成功和错误记忆的震撼人像。在识别出显着差异的地方,将错误记忆的振荡特性(即,当识别出同一类别的新探针时)与成功和错误记忆的振荡特性进行了比较。频谱分析显示,枕骨通道上的θ(6-8 Hz)功率可用于成功和错误记忆的编码,与其他类型的记忆错误相比,该功率较小。减小的theta功率表示编码成功,并反映了基础神经组件的有效激活。在保留间隔期间,确定了属于右侧顶枕通道的突出的alpha-beta(10-26 Hz)活动。发现错误记忆和错误要比正确回答的试验大。错误的高水平alpha-beta振荡活动对应于维护欠佳,从而导致WM资源分配效率低下。在错误记忆的情况下,这将意味着需要进行必要的认知努力来管理由编码刺激引起的额外语义和感知负荷。

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