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Corticostriatal output gating during selection from working memory

机译:从工作记忆中选择期间的皮质口输出门控

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摘要

Convergent evidence suggests that corticostriatal interactions act as a gate to select the input to working memory (WM). However, not all information in WM is relevant for behavior simultaneously. For this reason, a second "output gate" might advantageously govern which contents of WM influence behavior. Here, we test whether frontostriatal circuits previously implicated in input gating also support output gating during selection from WM. fMRI of ahierarchical rule task with dissociable input and output gating demands demonstrated greater lateral prefrontal cortex (PFC) recruitment and frontostriatal connectivity during output gating. Moreover, PFC and striatum correlated with distinct behavioral profiles. Whereas PFC recruitment correlated with mean efficiency of selection from WM, striatal recruitment and frontostriatal interactions correlated with its reliability, as though such dynamics stochastically gate WM's output. These results support the output gating hypothesis, suggesting that contextual representations in PFC influence striatum to select which information in WM drives responding.
机译:越来越多的证据表明,皮质口角相互作用可以作为选择工作记忆(WM)输入的门。但是,并非WM中的所有信息都与行为同时相关。因此,第二个“输出门”可以有利地控制WM的哪些内容影响行为。在这里,我们测试了先前与输入门控有关的前额骨电路是否也支持从WM选择期间的输出门控。具有可分离的输入和输出选通需求的分级规则任务的fMRI显示,在输出选通过程中,更大的外侧前额叶皮层(PFC)募集和额骨连接性。此外,PFC和纹状体与不同的行为特征相关。 PFC募集与从WM进行选择的平均效率相关,而纹状体募集和前额骨相互作用与其可靠性相关,就像这种动态随机地控制WM的产出一样。这些结果支持输出门控假设,表明PFC中的上下文表示会影响纹状体以选择WM中的哪些信息驱动响应。

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