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A theory of the visual system biology underlying development of spatial frequency lateralization

机译:空间频率侧向化发展背后的视觉系统生物学理论

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The spatial frequency hypothesis contends that performance differences between the hemispheres on various visuospatial tasks are attributable to lateralized processing of the spatial frequency content of visual stimuli. Hellige has proposed that such lateralization could arise during infant development from the earlier maturation of the right hemisphere combined with the increasing sensitivity of the visual system to high spatial frequencies. This proposal is intuitively appealing but lacks an explicit theory with respect to the underlying visual system biology. In this paper, we develop such a theory based on knowledge of visual system processing and development. We then translate our theory into a computational model that serves as the basis for a series of development simulations. We find that the simulations produce spatial frequency lateralization effects consistent with those observed empirically. We relate the nature of the neural asymmetry implied by our theory to empirical findings on visual pathway bias and the relative spatial frequency lateralization effect.
机译:空间频率假设认为,半球之间在各种视觉空间任务上的性能差异可归因于视觉刺激的空间频率内容的横向处理。 Hellige提出,在婴儿发育期间,右半球的较早成熟以及视觉系统对高空间频率的敏感性不断提高,可能会导致这种偏侧化。该建议在直观上很吸引人,但在底层视觉系统生物学方面缺乏明确的理论。在本文中,我们基于视觉系统处理和开发的知识开发了这样的理论。然后,我们将我们的理论转换为一个计算模型,该模型将作为一系列开发模拟的基础。我们发现,模拟产生的空间频率偏侧化效果与根据经验观察到的一致。我们将我们的理论所隐含的神经不对称的本质与视觉通路偏差和相对空间频率偏侧效应的经验发现联系起来。

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