神经科学
工作记忆
神经调节
编码(内存)
经颅直流电刺激
磁刺激
抑制性突触后电位
概化理论
神经活动
缘上回
心理学
离解(化学)
刺激(心理学)
计算机科学
前额叶皮质
认知心理学
启动(农业)
神经刺激
脑刺激
动机遗忘
海马体
刺激
经颅交流电刺激
认知
神经系统
功能磁共振成像
生物神经网络
大脑定位
人工神经网络
作者
Yueyao Liu,Yingtao Fu,Enze Tang,Hang Wu,Junrong Han,Musi Xie,Yihui Zhang,Bo Peng,Jinhao Huang,Hanjun Liu,Hui Chen,Pengmin Qin
标识
DOI:10.1038/s41467-025-66553-7
摘要
Attention and working memory (WM) have traditionally been considered closely linked processes with shared neural mechanisms. In information selection, attention is often conceptualized as a gatekeeper to WM, regulating which information is encoded and stored. Here, combining tasks specifically designed to separate attention from WM encoding with a multimodal approach, we provide converging neural and causal evidence that these processes are dissociable. Functional MRI identifies the supramarginal gyrus (SMG) as the key region enabling this dissociation, while dynamic causal modeling reveals the neural circuitry through which the SMG exerts inhibitory control over attentional representations, regulating their integration into WM. Furthermore, neuromodulation via transcranial direct current stimulation (tDCS) demonstrates that enhancing SMG activity strengthens this inhibitory control. A second tDCS experiment using varied stimuli confirms the generalizability of the effect. Finally, a transcranial magnetic stimulation (TMS) experiment provides further causal evidence with greater spatial precision. These findings challenge the long-standing view that attention and WM encoding form a continuous process, demonstrating instead that they constitute two dissociable neural processes of information selection.
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