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Correlated Size Variations in Human Visual Cortex Lateral Geniculate Nucleus and Optic Tract

机译:人类视觉皮层外侧膝状核和视道的相关大小变化。

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摘要

We have examined several components of the human visual system to determine how the dimensions of the optic tract, lateral geniculate nucleus (LGN), and primary visual cortex (V1) vary within the same brain. Measurements were made of the cross-sectional area of the optic tract, the volumes of the magnocellular and parvocellular layers of the LGN, and the surface area and volume of V1 in one or both cerebral hemispheres of 15 neurologically normal human brains obtained at autopsy. Consistent with previous observations, there was a two- to threefold variation in the size of each of these visual components among the individuals studied. Importantly, this variation was coordinated within the visual system of any one individual. That is, a relatively large V1 was associated with a commensurately large LGN and optic tract, whereas a relatively small V1 was associated with a commensurately smaller LGN and optic tract. This relationship among the components of the human visual system indicates that the development of its different parts is interdependent. Such coordinated variation should generate substantial differences in visual ability among humans.
机译:我们已经检查了人类视觉系统的几个组成部分,以确定同一大脑中视线,外侧膝状核(LGN)和初级视觉皮层(V1)的尺寸如何变化。测量了尸体解剖获得的15个神经学正常的人脑的一个或两个脑半球的视线横截面面积,LGN的巨细胞和细小细胞层的体积以及V1的表面积和V1的体积。与以前的观察结果一致,在所研究的个体中,这些视觉组件的大小存在2-3倍的变化。重要的是,这种变化是在任何人的视觉系统内进行协调的。也就是说,相对较大的V1与相应大的LGN和视力相关,而相对较小的V1与相应的小LGN和视力相关。人类视觉系统各组成部分之间的这种关系表明,其不同部分的发展是相互依存的。这种协调的变化应该在人类之间产生视觉能力的实质性差异。

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