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Determining the functional neuroanatomy of speech perception and reading.

机译:确定语音感知和阅读的功能神经解剖学。

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摘要

Brain imaging studies are advancing our knowledge of the anatomy of language. In this investigation, the spatiotemporal nature of phonological and semantic processing was explored along with the influence of working memory (WM) on these functions. Semantic comprehension was the common theme across three experiments, each of which involved either speech perception or reading. Neural activity was imaged using event-related brain potentials (ERPs) and functional magnetic resonance imaging (fMRI). The first experiment examined ERP correlates of phonology and semantics in a visual to auditory semantic priming task. The results supported the role of phonological processing in the formulation of lexical candidates; a process that likely utilized WM to provide 'bottom-up' input for semantic analysis. Spatial analyses confirmed that the phonological mismatch negativity (PMN) and semantic N400 response had specific activation patterns, with intracranial generators localized to different regions of the left perisylvian cortex. The second experiment examined WM influences on the N400 in a visual semantic priming task in which WM load was also varied. Increased WM load delayed the response latency (and reduced the relative amplitude). Intracranial generators were localized to left perisylvian language areas as well as memory regions in the bilateral anterior temporal lobes and left inferior parietal lobe. The effects of increased WM load were observed within these memory regions (particularly the latter). The third experiment explored fMRI correlates of the N400 in a reading task that used contextually constrained sentences. While a number of foci corresponded with left perisylvian N400 generators, the activation patterns varied across individuals. The findings demonstrated that hemodynamic correlates of the N400 were detectable in fMRI, but are likely at or near threshold levels. Overall, the investigation provided convergent evidence across stimulus and imaging modalities for a distributed neural architecture; one that supports cognitive processes essential to semantic comprehension.
机译:脑成像研究正在促进我们对语言解剖学的了解。在这项调查中,探讨了语音和语义处理的时空性质,以及工作记忆(WM)对这些功能的影响。语义理解是三个实验的共同主题,每个实验都涉及语音感知或阅读。使用事件相关的脑电势(ERP)和功能磁共振成像(fMRI)对神经活动进行成像。第一个实验在视觉到听觉的语义启动任务中检查了语音和语义的ERP相关性。结果支持语音处理在词汇候选词表述中的作用;一个可能利用WM为语义分析提供“自下而上”输入的过程。空间分析证实,语音失配否定性(PMN)和语义N400响应具有特定的激活模式,颅内生成器位于左侧肩周皮层的不同区域。第二个实验在视觉语义启动任务中检查了WM对N400的影响,其中WM负载也发生了变化。 WM负载增加会延迟响应延迟(并降低相对幅度)。颅内发生器定位于左周围神经语区以及双侧前颞叶和左下顶叶的记忆区。在这些内存区域(尤其是后者)内观察到WM负载增加的影响。第三个实验在使用上下文相关句子的阅读任务中探索了N400的fMRI相关性。虽然许多病灶对应于左近缘N400发生器,但激活模式因人而异。这些发现表明,在功能磁共振成像中可以检测到N400的血流动力学相关性,但可能达到或接近阈值水平。总体而言,研究为分布式神经体系结构的刺激和成像方式提供了收敛的证据。支持语义理解必不可少的认知过程的一种。

著录项

  • 作者

    D'Arcy, Ryan Clarke Newell.;

  • 作者单位

    Dalhousie University (Canada).;

  • 授予单位 Dalhousie University (Canada).;
  • 学科 Language Linguistics.;Psychology Psychobiology.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 228 p.
  • 总页数 228
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 语言学 ; 心理学 ;
  • 关键词

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