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神经网络在言语和视觉短期记忆中的共性。

The commonality of neural networks for verbal and visual short-term memory.

机构信息

Center for Cognitive and Behavioural Neuroscience, Université de Liège, Liège, Belgium.

出版信息

J Cogn Neurosci. 2010 Nov;22(11):2570-93. doi: 10.1162/jocn.2009.21378.

Abstract

Although many neuroimaging studies have considered verbal and visual short-term memory (STM) as relying on neurally segregated short-term buffer systems, the present study explored the existence of shared neural correlates supporting verbal and visual STM. We hypothesized that networks involved in attentional and executive processes, as well as networks involved in serial order processing, underlie STM for both verbal and visual list information, with neural specificity restricted to sensory areas involved in processing the specific items to be retained. Participants were presented sequences of nonwords or unfamiliar faces, and were instructed to maintain and recognize order or item information. For encoding and retrieval phases, null conjunction analysis revealed an identical fronto-parieto-cerebellar network comprising the left intraparietal sulcus, bilateral dorsolateral prefrontal cortex, and the bilateral cerebellum, irrespective of information type and modality. A network centered around the right intraparietal sulcus supported STM for order information, in both verbal and visual modalities. Modality-specific effects were observed in left superior temporal and mid-fusiform areas associated with phonological and orthographic processing during the verbal STM tasks, and in right hippocampal and fusiform face processing areas during the visual STM tasks, wherein these modality effects were most pronounced when storing item information. The present results suggest that STM emerges from the deployment of modality-independent attentional and serial ordering processes toward sensory networks underlying the processing and storage of modality-specific item information.

摘要

虽然许多神经影像学研究将言语和视觉短期记忆 (STM) 视为依赖于神经分离的短期缓冲区系统,但本研究探讨了支持言语和视觉 STM 的共享神经相关物的存在。我们假设,支持言语和视觉列表信息 STM 的是参与注意和执行过程的网络,以及参与序列处理的网络,而神经特异性仅限于处理要保留的特定项目的感官区域。参与者被呈现非单词或不熟悉的面孔序列,并被指示保持和识别顺序或项目信息。对于编码和检索阶段,零连接分析揭示了一个相同的额顶-小脑网络,包括左顶内沟、双侧背外侧前额叶皮层和双侧小脑,无论信息类型和模态如何。一个以右顶内沟为中心的网络支持言语和视觉模态中的顺序信息 STM。在言语 STM 任务中,与语音和正字法处理相关的左颞上区和中梭状回区域以及在视觉 STM 任务中与面孔处理相关的右海马和梭状回区域观察到了模态特异性效应,当存储项目信息时,这些模态效应最为明显。本研究结果表明,STM 是从对感官网络的模式独立注意和序列排序过程的部署中产生的,这些感官网络是处理和存储模式特异性项目信息的基础。

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