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Surface area accounts for the relation of gray matter volume to reading-related skills and history of dyslexia.

机译:表面积占灰质量与阅读相关技能和阅读障碍史的关系。

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It is unknown whether the abnormalities in brain structure and function observed in dyslexic readers are congenital or arise later in development. Analyzing the 2 components of gray matter volume separately may help in differentiating these possibilities. Gray matter volume is the product of cortical surface area, determined during prenatal brain development, and cortical thickness, determined during postnatal development. For this study, 16 adults with a history of phonological dyslexia and 16 age- and gender-matched controls underwent magnetic resonance imaging and an extensive battery of tests of reading-related skills. Cortical surface area and gray matter volume measures of the whole brain, the inferior frontal gyrus, and the fusiform gyrus were similarly related to phonological skills and a history of dyslexia. There was no relationship between cortical thickness and phonological skills or history of dyslexia. Because cortical surface area reflects cortical folding patterns determined prenatally, this suggests that brain differences in dyslexia are rooted in early cortical development and are not due to compensatory changes that occur during postnatal development and would be expected to influence cortical thickness. This study demonstrates the importance of examining the separate components of gray matter volume when studying developmental abnormalities.
机译:在阅读障碍的读者中观察到的大脑结构和功能异常是先天性的还是在发育后期出现的,这是未知的。分别分析灰质量的2个成分可能有助于区分这些可能性。灰质体积是在产前大脑发育过程中确定的皮质表面积和在产后发育过程中确定的皮质厚度的乘积。在这项研究中,对16位有语音诵读困难病史的成年人以及16位年龄和性别相匹配的对照组进行了磁共振成像,并进行了一系列与阅读有关的技能测试。全脑,额额下回和梭状回的皮质表面积和灰质体积测量与语音技能和阅读障碍史相似。皮层厚度与语音技能或阅读障碍史之间没有关系。因为皮质表面积反映了产前确定的皮质折叠模式,所以这表明阅读障碍的大脑差异源于早期皮质发育,而不是由于产后发育期间发生的代偿性变化而可能影响皮质厚度。这项研究证明了在研究发育异常时检查灰质体积的各个组成部分的重要性。

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