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Electrophysiology of working memory: Task modality and load effects.

机译:工作记忆的电生理学:任务形态和负荷效应。

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摘要

Goldman-Rakic offers a conceptualization of working memory (WM) that emphasizes how prefrontal (PFC) and posterior cortical areas are linked in reverbatory circuits that keep information on-line. Goldman-Rakic argues that these WM circuits are modality-specific, with dorsal PFC and parietal activation for spatial processing, and ventral PFC and inferior temporal activation when non-spatial or pattern information is being processed. Cohen et al. (1997) demonstrated fMRI activation of the dorsolateral PFC as a function of load in an n-back WM task. We employed a similar task to test the modality-specific WM model, with a spatial condition (position being the matched criterion for letter stimuli presented either 1, 2 or 3 items earlier) and a verbal condition (specific letter to be matched). Electrophysiological measures were employed, including ERP and EEG spectral analysis, as well as EEG coherence, which can provide a functional measure of corticocortical communication. EEG was recorded from 9 frontal and 9 parietal coronal sites from an extended 10-20 system.; Support was not found for modality-specific WM systems. Instead, results suggest that there is a WM circuit that connects dorsal frontal with dorsal parietal areas which is activated during a WM task, regardless of the type of stimuli involved. Data also suggest that left dorsal frontal and parietal areas are sensitive to the level of difficulty of the WM task (0, 1, 2 and 3-back), as well as familiarity of task demands. Overall, results support a model of WM that conceptualizes a unitary WM system rather than a system composed of separate WM circuits for different modalities. More specifically, these data appear to favor the WM model of Petrides (1995) which suggests a ventral/dorsal distinction in frontal activation patterns is related to the executive processes being performed on the information.
机译:高盛-拉基奇(Goldman-Rakic)提供了工作记忆(WM)的概念,该概念强调了前额叶(PFC)和后皮质区域如何在混响回路中链接在一起,从而使信息保持在线状态。 Goldman-Rakic认为这些WM电路是特定于模式的,当处理非空间或模式信息时,背侧PFC和顶壁激活用于空间处理,而腹侧PFC和次要时间激活。科恩等。 (1997)证明了背侧PFC的功能磁共振成像激活作为n后卫WM任务负荷的函数。我们采用了类似的任务来测试特定于情态的WM模型,其中具有空间条件(位置是字母刺激的匹配标准,之前出现过1、2或3个项目)和语言条件(要匹配的特定字母)。采用了电生理措施,包括ERP和EEG频谱分析以及EEG相干性,这些功能可以提供皮质皮质通信的功能性度量。在扩展的10-20系统中,从9个额叶和9个顶冠位记录了EEG。找不到针对特定于模式的WM系统的支持。取而代之的是,结果表明存在一种WM电路,该电路将背额叶与背顶叶区域连接在一起,无论涉及哪种刺激类型,该电路都会在WM任务期间激活。数据还表明,左前额叶和顶叶区域对WM任务的难度(0、1、2和3-back)以及任务要求的熟悉程度敏感。总体而言,结果支持WM模型,该模型将单一WM系统概念化,而不是由用于不同模式的单独WM电路组成的系统。更具体地说,这些数据似乎支持Petrides(1995)的WM模型,该模型表明额叶激活模式的腹侧/背侧区别与对信息执行的执行过程有关。

著录项

  • 作者

    Ross, Patricia.;

  • 作者单位

    University of Waterloo (Canada).;

  • 授予单位 University of Waterloo (Canada).;
  • 学科 Psychology Psychobiology.; Psychology Cognitive.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 心理学;心理学;
  • 关键词

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