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首页> 外文期刊>Trends in cognitive sciences >Mechanisms underlying working memory for novel information.
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Mechanisms underlying working memory for novel information.

机译:用于新信息的工作记忆的基础机制。

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摘要

In this Opinion article we describe a theory that the brain mechanisms underlying working memory for novel information include a buffer in parahippocampal cortices. Computational modeling indicates that mechanisms for maintaining novel information in working memory could differ from mechanisms for maintaining familiar information. Electrophysiological data suggest that the buffer for novel information depends on acetylcholine. Acetylcholine activates single-cell mechanisms that underlie persistent spiking of neurons in the absence of synaptic transmission, allowing maintenance of information without prior synaptic modification. fMRI studies and lesion studies suggest that parahippocampal regions mediate working memory for novel stimuli, and the effects of cholinergic blockade impair this function. These intrinsic mechanisms in parahippocampal cortices provide an important alternative to theories of working memory based on recurrent synaptic excitation.
机译:在这篇观点文章中,我们描述了一种理论,即针对新信息的工作记忆所基于的大脑机制包括海马旁皮质中的缓冲液。计算建模表明,用于在工作存储器中维护新信息的机制可能不同于用于维护熟悉的信息的机制。电生理数据表明,新信息的缓冲液取决于乙酰胆碱。乙酰胆碱可激活单细胞机制,该机制是在不存在突触传递的情况下持续刺激神经元的基础,从而无需事先进行突触修饰即可维持信息。 fMRI研究和病变研究表明,海马旁区域介导了新刺激的工作记忆,胆碱能阻滞的作用削弱了该功能。这些在海马旁皮质中的内在机制为基于反复突触兴奋的工作记忆理论提供了重要的替代方法。

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