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Resolving sentence ambiguity with strategic planning and working memory resources: Behavioral, imaging and functional connectivity analyses.

机译:通过战略计划和工作记忆资源解决句子歧义:行为,影像和功能连接分析。

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摘要

We used behavioral, functional magnetic resonance imaging (fMRI) and functional connectivity MRI (fcMRI) analyses to test competing strategies for disambiguation of a sentence featuring a temporary structural ambiguity (TSA), where working memory (WM) demands were also manipulated. Written sentences with a direct object (DO) structure or a sentential complement (SC) structure were shown to 19 healthy, right-handed, young adults in a phraseby-phrase manner. These sentences contained a main verb that is statistically more likely to be associated with a DO structure or an SC structure. Half of each type of sentence also contained an extra phrase strategically located to stress WM prior to disambiguating the sentence. We found that sentences featuring a less consistent verb-structure mapping recruit greater dorsolateral prefrontal cortex (dlPFC) activation than sentences with a more consistent verb-structure mapping, implicating strategic on-line planning during resolution of a TSA. By comparison, we observed left inferior parietal cortex (IPC) activation in sentences with an increased WM demand compared to sentences with a low WM load. Our fcMRI analysis showed that, although the same set of brain regions are often activated during different sentence processing conditions, the correlations between these areas change depending on the specific sentence processing demands. Less ambiguous sentences do not elicit a positive correlation between inferior frontal cortex (IFC) and dlPFC, but the positive correlation between IFC and dlPFC during more ambiguous stimuli suggests that these are co-activated and collaborate in order to resolve the ambiguity. We also found that the correlations between left IPC and both left IFC and left dlPFC remain constant during the course of sentence presentation. However, the correlation between left IPC and left IFC increases only during processing of the last phrase of "high WM" stimuli. Taken together, our observations are compatible with a serial processing model, where a large-scale neural network for sentence processing recruits distinct strategic planning and WM processing resources as needed to support the comprehension of sentences. Our results underline the value of complementing functional neuroimaging analyses with functional connectivity studies, in order to improve our understanding of neurocognitive function.
机译:我们使用行为,功能磁共振成像(fMRI)和功能连接性MRI(fcMRI)分析来测试针对具有暂时性结构歧义(TSA)的句子进行歧义消除的竞争策略,其中还操纵了工作记忆(WM)的要求。以逐句方式向19位健康,惯用右手的年轻人展示了具有直接宾语(DO)结构或句子补语(SC)结构的书面句子。这些句子包含一个主要动词,该动词在统计上更可能与DO结构或SC结构相关联。每种句子的一半还包含一个额外的短语,该短语的位置合理,可以在消除句子歧义之前强调WM。我们发现具有较不一致的动词结构映射的句子比具有更一致的动词结构映射的句子招募更多的背外侧前额叶皮层(dlPFC)激活,这牵涉到TSA解析期间的战略性在线计划。通过比较,我们观察到与WM负荷低的句子相比,WM需求增加的句子中的左下顶叶皮质(IPC)激活。我们的fcMRI分析表明,尽管经常在不同的句子处理条件下激活同一组大脑区域,但是这些区域之间的相关性会根据特定的句子处理需求而变化。模棱两可的句子较少不会引起下额叶皮层(IFC)与dlPFC之间的正相关,但在模棱两可的刺激过程中,IFC与dlPFC之间的正相关表明它们是共同激活的,并且相互协作以解决歧义。我们还发现,在句子表达过程中,左IPC与左IFC和左dlPFC之间的相关性保持恒定。但是,仅在处理“高WM”刺激的最后一个短语时,左IPC和左IFC之间的相关性才会增加。综上所述,我们的观察结果与串行处理模型兼容,在该模型中,用于句子处理的大规模神经网络根据需要招募独特的战略计划和WM处理资源来支持句子的理解。我们的结果强调了通过功能连接性研究补充功能性神经影像分析的价值,以增进我们对神经认知功能的理解。

著录项

  • 作者

    Santos, Susana Novais.;

  • 作者单位

    University of Pennsylvania.;

  • 授予单位 University of Pennsylvania.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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