我喜欢你移动的方式:有生命的运动如何影响人类婴儿早期的视觉注意力。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
ACS Applied Electronic Materials Pub Date : 2024-08-13 eCollection Date: 2024-01-01 DOI:10.3389/fnins.2024.1459550
Marco Lunghi, Elisa Di Giorgio
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引用次数: 0

摘要

迅速发现动物(与非动物相比)的能力对人类的生存十分有利。由于其相关性,不仅成年人类大脑进化出了特定的神经机制来分辨动物,而且有人提出,选择对人类的视觉注意力系统进行了微调,使其优先考虑发出生物存在信号的视觉线索。其中,有生命的运动--即有生命实体的运动--是引发人类注意的最强有力的线索之一。从发展的角度来看,这种特化是天生的还是后天习得的,是一个引人入胜的研究课题。这篇微型综述旨在总结和讨论最近的行为学和电生理学研究,这些研究表明,有生命的运动在人出生后的第一年具有注意优势。具体来说,本文的基本原理是,当单个点的运动以及单个点嵌入复杂阵列(即生物运动)时,有生命的运动如何影响注意力的部署。总之,本文将强调先天倾向于优先注意有生命的运动(主要由皮层下结构支持)和出生后不久的特定经历对于推动皮层注意视觉系统形成成人方式的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
I like the way you move: how animate motion affects visual attention in early human infancy.

The ability to detect animates (as compared with inanimates) rapidly is advantageous for human survival. Due to its relevance, not only the adult human brain has evolved specific neural mechanisms to discriminate animates, but it has been proposed that selection finely tuned the human visual attention system to prioritize visual cues that signal the presence of living things. Among them, animate motion-i.e., the motion of animate entities -, is one of the most powerful cues that triggers humans' attention. From a developmental point of view, whether such specialization is inborn or acquired through experience is a fascinating research topic. This mini-review aims to summarize and discuss recent behavioral and electrophysiological research that suggests that animate motion has an attentional advantage in the first year of life starting from birth. Specifically, the rationale underlying this paper concerns how attention deployment is affected by animate motion conveyed both by the movement of a single dot and, also, when the single dot is embedded in a complex array, named biological motion. Overall, it will highlight the importance of both inborn predispositions to pay attention preferentially to animate motion, mainly supported by subcortical structures, and the exposure to certain experiences, shortly after birth, to drive the cortical attentional visual system to become the way it is in adults.

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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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