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统计学习动态塑造听觉感知。

Statistical learning dynamically shapes auditory perception.

作者信息

Luthra Sahil, Luor Austin, Tierney Adam T, Dick Frederic, Holt Lori L

机构信息

Department of Psychology, Carnegie Mellon University, Pittsburgh, PA, 15213, USA.

Department of Psychology & Center for Perceptual Systems, The University of Texas at Austin, Austin, TX, 78712, USA.

出版信息

NPJ Sci Learn. 2025 Jun 19;10(1):41. doi: 10.1038/s41539-025-00328-z.

Abstract

Humans implicitly pick up on probabilities of stimuli and events, yet it remains unclear how statistical learning builds expectations that affect perception. Across 29 experiments, we examine the influence of task-irrelevant distributions-defined across acoustic frequency-on both tone detection in noise and tone duration judgments. The shape and range of the frequency distributions impact suppression and enhancement effects, as does a given tone's position within the range. Perception adapts quickly to changing distributions, but past distributions influence future judgments. Massed exposure to a single frequency impacts perception along a range of subsequently encountered frequencies. A novel bias emerges as well: lower frequencies are perceived as longer and higher ones as shorter. Probability-driven learning dynamically shapes perception, driven by interacting influences of sensory processing, distributional learning, and selective attention that sculpt a gain function involving modest enhancement of more-likely stimuli, and robust suppression of less-likely stimuli.

摘要

人类会下意识地了解刺激和事件的概率,但统计学习如何构建影响感知的预期仍不清楚。在29项实验中,我们研究了与任务无关的、根据声学频率定义的分布对噪声中的音调检测和音调持续时间判断的影响。频率分布的形状和范围会影响抑制和增强效果,给定音调在该范围内的位置也会产生同样的影响。感知会迅速适应不断变化的分布,但过去的分布会影响未来的判断。大量接触单一频率会影响随后一系列频率的感知。此外还出现了一种新的偏差:低频被感知为更长,高频被感知为更短。概率驱动的学习动态地塑造感知,这是由感觉处理、分布学习和选择性注意的相互作用驱动的,这些因素塑造了一个增益函数,该函数适度增强更可能出现的刺激,并有力地抑制不太可能出现的刺激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eebb/12179262/9752ca5ed6c6/41539_2025_328_Fig1_HTML.jpg

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