Department of Psychology and Princeton Neuroscience Institute, Princeton University, Princeton, NJ 08544, USA.
Princeton Neuroscience Institute, Princeton University, Princeton, NJ 08544, USA.
Cereb Cortex. 2021 May 10;31(6):3107-3121. doi: 10.1093/cercor/bhab009.
The fundamental receptive field (RF) architecture in human visual cortex becomes adult-like by age 5. However, visuo-spatial functions continue to develop until teenage years. This suggests that, despite the early maturation of the RF structure, functional interactions within and across RFs may mature slowly. Here, we used fMRI to investigate functional interactions among multiple stimuli in the visual cortex of school children (ages 8 to 12) in the context of biased competition theory. In the adult visual system, multiple objects presented in the same visual field compete for neural representation. These competitive interactions occur at the level of the RF and are therefore closely linked to the RF architecture. Like in adults, we found suppression of evoked responses in children's visual cortex when multiple stimuli were presented simultaneously. Such suppression effects were modulated by the spatial distance between the stimuli as a function of RF size across the visual system. Our findings suggest that basic competitive interactions in the visual cortex of children above age 8 operate in an adult-like manner, with subtle differences in early visual areas and area MT. Our study establishes a paradigm and provides baseline data to investigate the neural basis of visuo-spatial processing in typical and atypical development.
人类视觉皮层的基本感受野(RF)结构在 5 岁时变得成熟。然而,视空间功能仍在青少年时期继续发展。这表明,尽管 RF 结构早期成熟,但 RF 内和跨 RF 的功能相互作用可能发育缓慢。在这里,我们使用 fMRI 来研究学校儿童(8 至 12 岁)视觉皮层中多个刺激之间的功能相互作用,背景是有偏竞争理论。在成人视觉系统中,同一视野中呈现的多个物体争夺神经表示。这些竞争相互作用发生在 RF 水平,因此与 RF 结构密切相关。与成人一样,我们发现当同时呈现多个刺激时,儿童视觉皮层的诱发反应受到抑制。这种抑制效应受刺激之间的空间距离调制,作为整个视觉系统中 RF 大小的函数。我们的发现表明,8 岁以上儿童视觉皮层中的基本竞争相互作用以类似于成人的方式运作,在早期视觉区域和 MT 区存在细微差异。我们的研究建立了一个范例,并提供了基线数据,以研究典型和非典型发育中视空间处理的神经基础。