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知觉推理的神经特征

Neural signatures of perceptual inference.

作者信息

Sedley William, Gander Phillip E, Kumar Sukhbinder, Kovach Christopher K, Oya Hiroyuki, Kawasaki Hiroto, Howard Matthew A, Griffiths Timothy D

机构信息

Institute of Neuroscience, Newcastle University, Newcastle upon Tyne, United Kingdom.

Human Brain Research Laboratory, University of Iowa, Iowa, United States.

出版信息

Elife. 2016 Mar 7;5:e11476. doi: 10.7554/eLife.11476.

Abstract

Generative models, such as predictive coding, posit that perception results from a combination of sensory input and prior prediction, each weighted by its precision (inverse variance), with incongruence between these termed prediction error (deviation from prediction) or surprise (negative log probability of the sensory input). However, direct evidence for such a system, and the physiological basis of its computations, is lacking. Using an auditory stimulus whose pitch value changed according to specific rules, we controlled and separated the three key computational variables underlying perception, and discovered, using direct recordings from human auditory cortex, that surprise due to prediction violations is encoded by local field potential oscillations in the gamma band (>30 Hz), changes to predictions in the beta band (12-30 Hz), and that the precision of predictions appears to quantitatively relate to alpha band oscillations (8-12 Hz). These results confirm oscillatory codes for critical aspects of generative models of perception.

摘要

生成模型,如预测编码,假定感知是由感官输入和先前预测的组合产生的,每个都由其精度(逆方差)加权,两者之间的不一致称为预测误差(偏离预测)或惊奇(感官输入的负对数概率)。然而,缺乏关于这样一个系统及其计算的生理基础的直接证据。我们使用一种音高值根据特定规则变化的听觉刺激,控制并分离了感知背后的三个关键计算变量,并通过直接记录人类听觉皮层发现,由于预测违反而产生的惊奇由γ波段(>30Hz)的局部场电位振荡编码,β波段(12 - 30Hz)的预测变化,并且预测的精度似乎与α波段振荡(8 - 12Hz)定量相关。这些结果证实了感知生成模型关键方面的振荡编码。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/046d/4841773/03b479859ae0/elife-11476-fig1.jpg

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