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Hemispheric asymmetries in the orientation and location of the lateral geniculate nucleus in dyslexia

机译:在诵读综合症中横向胰核的定向和位置的半球的不对称

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>Human brain asymmetry reflects normal specialization of functional roles and may derive from evolutionary, hereditary, developmental, experiential, and pathological factors (Toga & Thompson, 2003). Geschwind and Galaburda (1985) suggested that processing difficulties in dyslexia are due to structural differences between hemispheres. Because of its potential significance to the controversial magnocellular theory of dyslexia, we investigated hemispheric differences in the human lateral geniculate nucleus (LGN), the primary visual relay and control nucleus in the thalamus, in subjects with dyslexia compared to normal readers. We acquired and averaged multiple high‐resolution proton density (PD) weighted structural magnetic resonance imaging (MRI) volumes to measure in detail the anatomical boundaries of the LGN in each hemisphere. We observed hemispheric asymmetries in the orientation of the nucleus in subjects with dyslexia that were absent in controls. We also found differences in the location of the LGN between hemispheres in controls but not in subjects with dyslexia. Neither the precise anatomical differences in the LGN nor their functional consequences are known, nor is it clear whether the differences might be causes or effects of dyslexia.
机译: >人脑不对称反映了功能性角色的正常专业化,可能导致进化,遗传,发育,体验和病理因素(Toga& Thompson,2003)。 Geschwind和Galaburda(1985)建议在综合症的处理困难是由于半球之间的结构差异。由于其对综合症患者的争议致血细胞理论的潜在意义,我们在与普通读者相比,在具有综合带综合症的受试者中,我们研究了人类横向胰核(LGN),初级视觉继电器和对照细胞核的半球差异。我们获得和平均多个高分辨率质子密度(Pd)加权结构磁共振成像(MRI)体积,以详细测量每个半球中LGN的解剖学边界。我们观察到核心核心的核心方向的半球不对称。我们还发现了对照中的半球之间LGN的位置的差异,但不在患有诵读的主题中。 LGN中的精确解剖差异也不是已知的,也不清楚差异是否可能是缺点的原因或影响。

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