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首页> 外文期刊>Frontiers in Computational Neuroscience >TMS-induced neural noise in sensory cortex interferes with short-term memory storage in prefrontal cortex
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TMS-induced neural noise in sensory cortex interferes with short-term memory storage in prefrontal cortex

机译:TMS诱导的感觉皮层神经噪声干扰前额叶皮层的短期记忆存储

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In a previous study, Harris et al. (2002) found disruption of vibrotactile short-term memory after applying single-pulse transcranial magnetic stimulation (TMS) to primary somatosensory cortex (SI) early in the maintenance period, and suggested that this demonstrated a role for SI in vibrotactile memory storage. While such a role is compatible with recent suggestions that sensory cortex is the storage substrate for working memory, it stands in contrast to a relatively large body of evidence from human EEG and single-cell recording in primates that instead points to prefrontal cortex as the storage substrate for vibrotactile memory. In the present study, we use computational methods to demonstrate how Harris et al.'s results can be reproduced by TMS-induced activity in sensory cortex and subsequent feedforward interference with memory traces stored in prefrontal cortex, thereby reconciling discordant findings in the tactile memory literature.
机译:在先前的研究中,Harris等人。 (2002年)发现在维持期早期对原代体感皮层(SI)进行单脉冲经颅磁刺激(TMS)后,动触觉短期记忆受到破坏,并表明这证明了SI在触觉记忆中的作用。虽然这种作用与最近的建议(即感觉皮层是工作记忆的存储基质)相符,但与人类脑电图和灵长类动物中单细胞记录的相对大量证据相反,相反,它们指向前额叶皮层作为存储物触觉记忆的基质。在本研究中,我们使用计算方法来证明哈里斯(Harris)等人的结果如何通过TMS诱导的感觉皮层活动以及随后对前额叶皮层中存储的记忆痕迹的前馈干扰来再现,从而协调触觉记忆中不一致的发现文学。

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