V1 群体的活动如何影响知觉的确定性?

IF 2 4区 心理学 Q2 OPHTHALMOLOGY Journal of Vision Pub Date : 2024-06-03 DOI:10.1167/jov.24.6.12
Zoe M Boundy-Singer, Corey M Ziemba, Olivier J Hénaff, Robbe L T Goris
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引用次数: 0

摘要

感觉皮层中的神经群活动为我们对环境的感知解读提供了信息。通常情况下,这种神经群活动会支持多种解释。不同选择的概率分布越大,所选择的感知解释就越不确定。我们测试了这样一个假设,即感知解释的可靠性可以通过感觉群活动的简单转换来揭示。我们记录了固定猕猴的 V1 群体活动,同时在不同水平的干扰变异和信号强度下呈现定向刺激。我们开发了一种解码程序,从 V1 活动中推断出最有可能的刺激方向以及这一估计的确定性。我们的分析表明,反应幅度、反应离散度和反应增益的变异性都能为方向确定性提供有用的代用指标。在这三个指标中,最后一个指标与解码器的不确定性估计关联最大。这些结果说明,感觉皮层中神经群活动的性质为下游回路提供了多种选择来评估知觉解释的可靠性。
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How does V1 population activity inform perceptual certainty?

Neural population activity in sensory cortex informs our perceptual interpretation of the environment. Oftentimes, this population activity will support multiple alternative interpretations. The larger the spread of probability over different alternatives, the more uncertain the selected perceptual interpretation. We test the hypothesis that the reliability of perceptual interpretations can be revealed through simple transformations of sensory population activity. We recorded V1 population activity in fixating macaques while presenting oriented stimuli under different levels of nuisance variability and signal strength. We developed a decoding procedure to infer from V1 activity the most likely stimulus orientation as well as the certainty of this estimate. Our analysis shows that response magnitude, response dispersion, and variability in response gain all offer useful proxies for orientation certainty. Of these three metrics, the last one has the strongest association with the decoder's uncertainty estimates. These results clarify that the nature of neural population activity in sensory cortex provides downstream circuits with multiple options to assess the reliability of perceptual interpretations.

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来源期刊
Journal of Vision
Journal of Vision 医学-眼科学
CiteScore
2.90
自引率
5.60%
发文量
218
审稿时长
3-6 weeks
期刊介绍: Exploring all aspects of biological visual function, including spatial vision, perception, low vision, color vision and more, spanning the fields of neuroscience, psychology and psychophysics.
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