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Effects of Orthographic and Phonological Grain Size on Reading Acquisition, Spoken Word Processing, and Hierarchical Organization of the Human Auditory Cortex.

机译:正字法和语音粒度对人类听觉皮层的阅读习得,口语处理和层次组织的影响。

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摘要

Three studies investigated the effect of grain size on reading instruction, cross-linguistic differences during spoken word processing, and organization of the auditory cortex. Grain size is the number of phones or graphemes in a word or word segment. The first study asked if grain size emphasis during reading instruction resulted in differences in grain size sensitivity and processing speed. Previous investigations considered sensitivity to letters or words, whereas this study systematically tested multiple grain sizes. The main findings revealed better sensitivity to rimes and faster processing speed given large grain instruction. The results suggest that large grain instruction may be beneficial for adults learning a new alphabetic orthography that emphasizes rime structure. The second study asked if small versus large orthographic grain size experience changes the phonological network. Unlike previous neuroimaging studies that considered developmental changes within languages, this study directly compared developmental changes given English versus Chinese orthographic experience during spoken word processing and revealed greater developmental increases in phonological network engagement given small versus large grain orthographic experience. The results suggest that orthographic grain size experience leads to cross-linguistic divergence in the phonological network for spoken word processing. The final study asked if the auditory cortex is organized with selectivity to phonological grain size by testing multiple grain sizes. Unlike previous investigations that looked at lower level acoustic features or only single grain sizes, this study compared activation for multiple grain sizes. The main findings included greater small grain sensitivity closer to the primary auditory cortex, greater large grain sensitivity farther from the primary auditory cortex, and greater sensitivity to syllable boundaries in a region overlapping with small grain size. These studies extend previous work and demonstrate that orthographic and phonological grain size plays a critical role in reading instruction for adults learning a new orthography, phonological network activation during spoken word processing, and organization of the auditory cortex for speech processing. Future research should determine if grain size organization changes with language development and deficits in reading skill. Organization should become more distinct over development and should be less distinct in those with reading disability.
机译:三项研究调查了晶粒大小对阅读指导,口语单词处理过程中的跨语言差异以及听觉皮层组织的影响。粒度是单词或单词段中电话或字素的数量。第一项研究询问在阅读指导过程中强调晶粒尺寸是否会导致晶粒尺寸敏感性和加工速度上的差异。先前的研究考虑了对字母或单词的敏感性,而本研究系统地测试了多种晶粒尺寸。主要发现表明,在使用大颗粒谷物的情况下,对better的敏感性更高,加工速度更快。结果表明,大谷物教学可能对学习新的强调字法结构的字母正字法的成年人有益。第二项研究询问大小正字大小的经验是否会改变语音网络。与先前的神经影像学研究不考虑语言内的发展变化不同,本研究直接比较了在口语处理过程中给定英语与汉语拼字经验给定的发展变化,并揭示了相对于大粒正字法经验在语音网络参与方面的更大发展。结果表明,正字粒度的经验导致语音网络中语音文字处理的跨语言差异。最终研究询问,通过测试多个晶粒大小,听觉皮层是否对语音晶粒大小具有选择性。与先前的研究仅关注较低级别的声学特征或仅关注单个晶粒尺寸的情况不同,本研究比较了多个晶粒尺寸的激活。主要发现包括更靠近初级听觉皮层的小颗粒敏感性,远离初级听觉皮层的较大颗粒敏感性以及对与小颗粒重叠区域中音节边界的更大敏感性。这些研究扩展了以前的工作,并证明了正字法和语音粒度在成年人学习新的正字法的阅读指导,口语处理过程中的语音网络激活以及语音处理的听觉皮层组织中起着至关重要的作用。未来的研究应该确定晶粒大小的组织是否随着语言的发展和阅读技巧的不足而发生变化。在发展方面,组织应该变得更加鲜明,在阅读障碍者中,组织应该变得更加鲜明。

著录项

  • 作者

    Brennan, Christine.;

  • 作者单位

    Northwestern University.;

  • 授予单位 Northwestern University.;
  • 学科 Biology Neuroscience.;Language Linguistics.;Psychology Cognitive.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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