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Early Development of Letter Specialization in Left Fusiform is Associated with Better Word Reading and Smaller Fusiform Face Area

机译:左梭形字母专业化的早期发展与更好的单词阅读和较小的梭形脸部面积相关

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摘要

A functional region of left fusiform gyrus termed “the visual word form area” (VWFA) develops during reading acquisition to respond more strongly to printed words than to other visual stimuli. Here, we examined responses to letters among 5- and 6-year-old early Kindergarten children (N=48) with little or no school-based reading instruction who varied in their reading ability. We used functional magnetic resonance imaging (fMRI) to measure responses to individual letters, false fonts, and faces in left and right fusiform gyri. We then evaluated whether signal change and size (spatial extent) of letter-sensitive cortex (greater activation for letters versus faces) and letter-specific cortex (greater activation for letters versus false fonts) in these regions related to (a) standardized measures of word-reading ability and (b) signal change and size of face-sensitive cortex (fusiform face area or FFA; greater activation for faces versus letters). Greater letter specificity, but not letter sensitivity, in left fusiform gyrus correlated positively with word reading scores. Across children, in the left fusiform gyrus, greater size of letter-sensitive cortex correlated with lesser size of FFA. These findings are the first to suggest that in beginning readers, development of letter responsivity in left fusiform cortex is associated with both better reading ability and also a reduction of the size of left FFA that may result in right-hemisphere dominance for face perception.
机译:左梭状回的功能区称为“视觉单词形式区域”(VWFA),在阅读过程中发展,对印刷单词的反应比对其他视觉刺激的反应更强烈。在这里,我们研究了在很少或根本没有校本阅读指导且阅读能力各不相同的5岁和6岁的早期幼儿园儿童(N = 48)中对字母的反应。我们使用功能磁共振成像(fMRI)来测量对左右梭状回中单个字母,假字体和面部的响应。然后,我们评估了这些区域中字母敏感皮层(字母相对于面部的较大激活)和特定于字母的皮层(字母相对于虚假字体的较大激活)的信号变化和大小(空间范围)是否与(a)单词阅读能力和(b)面部敏感皮层的信号变化和大小(梭形面部区域或FFA;面部与字母的激活程度更高)。左梭状回中较大的字母特异性,但不敏感,与单词阅读分数呈正相关。在整个儿童中,在纺锤形左回中,对字母敏感的皮层较大,而FFA较小。这些发现首次表明,在初学者中,左梭形皮质中字母反应性的发展与更好的阅读能力以及左FFA尺寸的减小有关,后者可能导致右半球占主导地位。

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