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首页> 外文期刊>Brain structure & function >Novelty modulates human striatal activation and prefrontal–striatal effective connectivity during working memory encoding
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Novelty modulates human striatal activation and prefrontal–striatal effective connectivity during working memory encoding

机译:新奇在工作存储器编码过程中调节人纹纹活化和前偏移偏向的有效连通性

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摘要

The functional role of the basal ganglia (BG) in the gating of suitable motor responses to the cortex is well established. Growing evidence supports an analogous role of the BG during working memory encoding, a task phase in which the “input-gating” of relevant materials (or filtering of irrelevant information) is an important mechanism supporting cognitive capacity and the updating of working memory buffers. One important aspect of stimulus relevance is the novelty of working memory items, a quality that is understudied with respect to its effects on corticostriatal function and connectivity. To this end, we used functional magnetic resonance imaging (fMRI) in 74 healthy volunteers performing an established Sternberg working memory task with different task phases (encoding vs. retrieval) and degrees of stimulus familiarity (novel vs. previously trained). Activation analyses demonstrated a highly significant engagement of the anterior striatum, in particular during the encoding of novel working memory items. Dynamic causal modeling (DCM) of corticostriatal circuit connectivity identified a selective positive modulatory influence of novelty encoding on the connection from the dorsolateral prefrontal cortex (DLPFC) to the anterior striatum. These data extend prior research by further underscoring the relevance of the BG for human cognitive function and provide a mechanistic account of the DLPFC as a plausible top-down regulatory element of striatal function that may facilitate the “input-gating” of novel working memory materials.
机译:基础神经节(BG)在适当的电动机响应对皮质的函数中的功能作用是很好的。日益增长的证据支持BG在工作存储器编码期间的类似作用,其中相关材料的“输入门”(或无关信息过滤)是支持认知能力和更新工作存储器缓冲器的重要机制。刺激相关性的一个重要方面是工作存储器项的新颖性,这是对其对皮质棘轮功能和连接的影响来描述的质量。为此,我们在74个健康志愿者中使用了功能磁共振成像(FMRI),该志愿者执行了具有不同任务阶段(编码与检索)和刺激熟悉程度的建立的斯特恩伯格工作记忆任务和刺激熟悉程度(先前培训的新型VS)。激活分析表明前纹状体的高度显着接合,特别是在新颖的工作存储器项的编码期间。皮质棘轮电路连接的动态因果模型(DCM)确定了在与背侧前额叶皮质(DLPFC)连接到前纹状体上的新颖性编码的选择性正面调节影响。这些数据通过进一步强调BG对人类认知功能的相关性并提供DLPFC的机械陈述作为纹状体功能的合理自上而下的调节元件,可以促进新型工作记忆材料的“投入门控”的机械陈述。

著录项

  • 来源
    《Brain structure & function》 |2018年第7期|共12页
  • 作者单位

    Department of Psychiatry and Psychotherapy Central Institute of Mental Health Medical Faculty;

    Department of Psychiatry and Psychotherapy Central Institute of Mental Health Medical Faculty;

    Department of Psychiatry and Psychotherapy Central Institute of Mental Health Medical Faculty;

    Department of Psychiatry and Psychotherapy Central Institute of Mental Health Medical Faculty;

    Department of Psychiatry and Psychotherapy Central Institute of Mental Health Medical Faculty;

    Department of Psychiatry and Psychotherapy Central Institute of Mental Health Medical Faculty;

    Department of Psychiatry Rudolf Magnus Brain Center University Medical Center Utrecht;

    Department of Psychiatry and Psychotherapy Central Institute of Mental Health Medical Faculty;

    Department of Psychiatry and Psychotherapy Central Institute of Mental Health Medical Faculty;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 基础医学;
  • 关键词

    Corticostriatal circuits; Novelty; Dynamic causal modeling; fMRI;

    机译:皮质血管电路;新奇;动态因果造型;FMRI;

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