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视觉 V4 区选择性注意和努力的神经元相关性与动机背景无关。

Neuronal correlates of selective attention and effort in visual area V4 are invariant of motivational context.

机构信息

Department of Neurobiology and Neuroscience Institute, The University of Chicago, Chicago, IL 60637, USA.

出版信息

Sci Adv. 2022 Jun 10;8(23):eabc8812. doi: 10.1126/sciadv.abc8812.

Abstract

Task demands can differentially engage two fundamental attention components: selectivity (spatial bias) and effort (total nonselective attentional intensity). The relative contributions and interactions of these components in modulating neuronal signals remain unknown. We recorded V4 neurons while monkeys' spatially selective attention and effort were independently controlled by adjusting either task difficulty or reward size at two locations. Neurons were robustly modulated by either selective attention or effort. Notably, increasing overall effort to improve performance at a distant site reduced neuronal responses even when performance was unchanged for receptive field stimuli. This interaction between attentional selectivity and effort was evident in single-trial spiking and can be explained by divisive normalization of spatially distributed behavioral performance at the single-neuron level. Changing motivation using task difficulty or reward produced indistinguishable effects. These results provide a cellular-level mechanism of how attention components integrate to modulate sensory processing in different motivational contexts.

摘要

任务需求可以差异化地激活两种基本的注意成分

选择性(空间偏向)和努力(总非选择性注意强度)。这些成分在调节神经元信号方面的相对贡献和相互作用尚不清楚。我们在猴子的空间选择性注意和努力分别通过调整两个位置的任务难度或奖励大小来控制时,记录了 V4 神经元。神经元受到选择性注意或努力的强烈调节。值得注意的是,即使对感受野刺激的表现不变,通过增加整体努力来提高远距离位置的表现也会降低神经元的反应。这种注意力选择性和努力之间的相互作用在单次试验的尖峰中表现明显,并且可以通过在单细胞水平上对空间分布的行为表现进行归一化来解释。使用任务难度或奖励来改变动机产生了可区分的效果。这些结果提供了一种细胞水平的机制,说明注意力成分如何在不同的动机背景下整合以调节感觉处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd69/9187239/7f647211a25b/sciadv.abc8812-f1.jpg

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