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视觉物体接近身体会在 4 个月大时调节随后的体感处理。

Visual objects approaching the body modulate subsequent somatosensory processing at 4 months of age.

机构信息

Centre for Developmental Science, School of Psychology, University of Birmingham, Birmingham, UK.

Department of Psychology, Goldsmiths, University of London, London, UK.

出版信息

Sci Rep. 2023 Nov 21;13(1):19300. doi: 10.1038/s41598-023-45897-4.

Abstract

We asked whether, in the first year of life, the infant brain can support the dynamic crossmodal interactions between vision and somatosensation that are required to represent peripersonal space. Infants aged 4 (n = 20, 9 female) and 8 (n = 20, 10 female) months were presented with a visual object that moved towards their body or receded away from it. This was presented in the bottom half of the screen and not fixated upon by the infants, who were instead focusing on an attention getter at the top of the screen. The visual moving object then disappeared and was followed by a vibrotactile stimulus occurring later in time and in a different location in space (on their hands). The 4-month-olds' somatosensory evoked potentials (SEPs) were enhanced when tactile stimuli were preceded by unattended approaching visual motion, demonstrating that the dynamic visual-somatosensory cortical interactions underpinning representations of the body and peripersonal space begin early in the first year of life. Within the 8-month-olds' sample, SEPs were increasingly enhanced by (unexpected) tactile stimuli following receding visual motion as age in days increased, demonstrating changes in the neural underpinnings of the representations of peripersonal space across the first year of life.

摘要

我们探讨了在生命的第一年,婴儿大脑是否能够支持视觉和躯体感觉之间的动态跨模态相互作用,而这种相互作用是代表个体空间所必需的。我们对 4 个月(n=20,9 名女性)和 8 个月(n=20,10 名女性)大的婴儿进行了实验,向他们呈现一个朝他们身体移动或远离他们身体的视觉物体。该物体出现在屏幕的下半部分,不会引起婴儿的注视,婴儿的注意力被集中在屏幕顶部的一个吸引注意力的物体上。然后,视觉移动的物体消失,接着是一个在时间和空间上不同位置(在他们的手上)的振动触觉刺激。当触觉刺激在前,未被注意到的趋近的视觉运动在后时,4 个月大的婴儿的体感诱发电位(SEPs)会增强,这表明支持身体和个体空间表示的动态视觉-躯体感觉皮层相互作用在生命的第一年就开始了。在 8 个月大的婴儿样本中,随着年龄的增长(以天数计),视觉运动后退后,(意外的)触觉刺激会使 SEPs 越来越增强,这表明个体空间表示的神经基础在生命的第一年发生了变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/454b/10663495/7cdd3099160c/41598_2023_45897_Fig1_HTML.jpg

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