幼儿多体素模式分析揭示了阅读对后期音韵学表征质量的雕刻效应

IF 2.1 2区 心理学 Q1 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY Brain and Language Pub Date : 2023-04-01 DOI:10.1016/j.bandl.2023.105252
Jin Wang , Frank Tong , Marc F. Joanisse , James R. Booth
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引用次数: 2

摘要

王等人之前的一项研究使用单变量分析。(2020)发现,颞上回早期语音表征对后期阅读技能有支架效应,但未能观察到早期阅读对后期语音表征的塑造效应。目前的研究应用了多体素模式分析(MVPA)来检查幼儿是否同时存在支架和雕刻效果。我们发现,更好的初始阅读技能可以预测STG中语音表征的大脑活动模式的解码系数更高。这种雕刻效应只存在于解码小粒度(音素)和年幼的儿童(6至7.5岁)中,因为我们没有发现对大粒度(音韵)或年长的儿童(7.5至9.5岁)有任何影响。尽管没有观察到支架效应,目前的研究首次提供了早期阅读如何塑造早期读者后期语音意识的神经证据。
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A sculpting effect of reading on later representational quality of phonology revealed by multi-voxel pattern analysis in young children

Using univariate analysis, a previous study by Wang et al. (2020) found a scaffolding effect of earlier phonological representation in superior temporal gyrus (STG) on later reading skill but failed to observe a sculpting effect of earlier reading on later phonological representation. The current study applied multi-voxel pattern analysis (MVPA) to examine if both scaffolding and sculpting effects were present in young children. We found that better initial reading skill predicted higher decoding coefficient of brain activity patterns for phonological representations in STG. This sculpting effect was present only for decoding small grain sizes (phonemes) and in younger children (6- to 7.5-year-olds), as we did not find any effects for large grain sizes (rhymes) or older children (7.5- to 9.5-year-olds). Although a scaffolding effect was not observed, the current study provides the first neural evidence of how earlier reading sculpts later phonological awareness in beginning readers.

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来源期刊
Brain and Language
Brain and Language 医学-神经科学
CiteScore
4.50
自引率
8.00%
发文量
82
审稿时长
20.5 weeks
期刊介绍: An interdisciplinary journal, Brain and Language publishes articles that elucidate the complex relationships among language, brain, and behavior. The journal covers the large variety of modern techniques in cognitive neuroscience, including functional and structural brain imaging, electrophysiology, cellular and molecular neurobiology, genetics, lesion-based approaches, and computational modeling. All articles must relate to human language and be relevant to the understanding of its neurobiological and neurocognitive bases. Published articles in the journal are expected to have significant theoretical novelty and/or practical implications, and use perspectives and methods from psychology, linguistics, and neuroscience along with brain data and brain measures.
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