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Visual Selective Attention in Mice

delete2018-03-01
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L
Lupeng Wang
R
Richard J. Krauzlis *
DOI:10.1016/j.cub.2018.01.038delete
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摘要

摘要

En 中文
Visual selective attention is a fundamental cognitive ability that allows us to process relevant visual stimuli while ignoring irrelevant distracters and has been extensively studied in human and non-human primate subjects. Mice have emerged as a powerful animal model for studying aspects of the visual system but have not yet been shown to exhibit visual selective attention. Differences in the organization of the visual systems of primates and mice raise the possibility that selective visual attention might not be present in mice, at least not in the forms that are well established in primates. Here, we tested for selective visual attention in mice by using three behavioral paradigms adapted from classic studies of attention. In a Posner-style cueing task, a spatial cue indicated the probable location of the relevant visual event, and we found that accuracy was higher and reaction times were shorter on validly cued trials. In a cue versus no-cue task, an informative spatial cue was provided on half the trials, and mice had higher accuracy and shorter reaction times with spatial cues and also lower detection thresholds measured from psychometric curves. In a filter task, the spatial cue indicated the location of the relevant visual event, and we found that mice could be trained to ignore irrelevant but otherwise identical visual events at uncued locations. Together, these results demonstrate that mice exhibit visual selective attention, paving the way to use classic attention paradigms in mice to study the genetic and neuronal circuit mechanisms of selective attention.
Keyword:
THALAMIC RETICULAR NUCLEUS
PSYCHOMETRIC FUNCTION
SENSORY SELECTION
SPATIAL ATTENTION
BEHAVING MOUSE
EYE-MOVEMENTS
TIME-COURSE
CONTRAST
CORTEX
PSYCHOPHYSICS
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期刊

Current Biology 封面图
Current Biology
IF:
7.5
论文数:
2.2W
被引数:
7.8W

机构

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national institutes of health (nih) - usa
学者数:
10.3W
论文数: 8.2W
被引数: 111
引用论文

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Broadly Tuned Response Properties of Diverse Inhibitory Neuron Subtypes in Mouse Visual Cortex
errNEURON
IF15
err2010-09-01
err489
errOAAI
errKerlin, Aaron M.; Andermann, Mark L.; Berezovskii, Vladimir K.; Reid, R. Clay
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