皮层层次上的注意力:发展很重要。

IF 3.2 2区 心理学 Q1 PSYCHOLOGY, EXPERIMENTAL
Andrew Lynn, Dima Amso
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引用次数: 3

摘要

我们建立在现有的偏见竞争观点的基础上,认为注意力是神经计算在层次嵌入和结构连接的皮层通路内和之间的一种紧急属性。那么,我们必须批判性地问,注意力从何而来?在这个框架内,感官输入和前馈-反馈信息流质量的发展变化塑造了注意的出现和效率。在尾侧到吻侧轴上发育的结构和功能皮层结构的几个梯度为注意力的出现提供了基础。视觉区域内的神经活动取决于神经元密度、感受野大小、神经元的调谐特性以及视野中特征和物体的位置和竞争。这些视觉皮质特性突出了注意力需要解决的信息处理瓶颈。循环往复的前馈和反馈连接通过皮层各层次的一系列步骤传递感觉信息,将整个皮层层次的感觉信息整合起来,并将感觉处理与高阶大脑区域联系起来。高阶区域同时提供传递行为背景和目标的输入。因此,注意力反映了一系列复杂的有偏见的竞争神经计算的输出,这些计算发生在分层嵌入的皮层区域内部和之间。皮层的发育沿着尾侧到吻侧轴进行,反映了感觉信息从尾侧到吻侧区域的流动,视觉处理继续发展到童年。检查典型和非典型发育将提供在成人稳定状态中无法获得的关键机制见解。本文分类为:心理学>注意力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Attention along the cortical hierarchy: Development matters.

We build on the existing biased competition view to argue that attention is an emergent property of neural computations within and across hierarchically embedded and structurally connected cortical pathways. Critically then, one must ask, what is attention emergent from? Within this framework, developmental changes in the quality of sensory input and feedforward-feedback information flow shape the emergence and efficiency of attention. Several gradients of developing structural and functional cortical architecture across the caudal-to-rostral axis provide the substrate for attention to emerge. Neural activity within visual areas depends on neuronal density, receptive field size, tuning properties of neurons, and the location of and competition between features and objects in the visual field. These visual cortical properties highlight the information processing bottleneck attention needs to resolve. Recurrent feedforward and feedback connections convey sensory information through a series of steps at each level of the cortical hierarchy, integrating sensory information across the entire extent of the cortical hierarchy and linking sensory processing to higher-order brain regions. Higher-order regions concurrently provide input conveying behavioral context and goals. Thus, attention reflects the output of a series of complex biased competition neural computations that occur within and across hierarchically embedded cortical regions. Cortical development proceeds along the caudal-to-rostral axis, mirroring the flow in sensory information from caudal to rostral regions, and visual processing continues to develop into childhood. Examining both typical and atypical development will offer critical mechanistic insight not otherwise available in the adult stable state. This article is categorized under: Psychology > Attention.

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来源期刊
CiteScore
7.30
自引率
7.70%
发文量
50
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