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正交神经表征支持对自然刺激的感知判断。

Orthogonal neural representations support perceptual judgments of natural stimuli.

作者信息

Srinath Ramanujan, Ni Amy M, Marucci Claire, Cohen Marlene R, Brainard David H

机构信息

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

Department of Psychology, University of Pennsylvania, Philadelphia, PA, 19104, USA.

出版信息

Sci Rep. 2025 Feb 13;15(1):5316. doi: 10.1038/s41598-025-88910-8.

Abstract

In natural visually guided behavior, observers must separate relevant information from a barrage of irrelevant information. Many studies have investigated the neural underpinnings of this ability using artificial stimuli presented on blank backgrounds. Natural images, however, contain task-irrelevant background elements that might interfere with the perception of object features. Recent studies suggest that visual feature estimation can be modeled through the linear decoding of task-relevant information from visual cortex. So, if the representations of task-relevant and irrelevant features are not orthogonal in the neural population, then variation in the task-irrelevant features would impair task performance. We tested this hypothesis using human psychophysics and monkey neurophysiology combined with parametrically variable naturalistic stimuli. We demonstrate that (1) the neural representation of one feature (the position of an object) in visual area V4 is orthogonal to those of several background features, (2) the ability of human observers to precisely judge object position was largely unaffected by those background features, and (3) many features of the object and the background (and of objects from a separate stimulus set) are orthogonally represented in V4 neural population responses. Our observations are consistent with the hypothesis that orthogonal neural representations can support stable perception of object features despite the richness of natural visual scenes.

摘要

在自然的视觉引导行为中,观察者必须从大量无关信息中分离出相关信息。许多研究使用呈现于空白背景上的人工刺激来探究这种能力的神经基础。然而,自然图像包含可能干扰物体特征感知的任务无关背景元素。最近的研究表明,视觉特征估计可以通过从视觉皮层对任务相关信息进行线性解码来建模。因此,如果任务相关和无关特征的表征在神经群体中不是正交的,那么任务无关特征的变化就会损害任务表现。我们结合参数可变的自然主义刺激,使用人类心理物理学和猴子神经生理学来检验这一假设。我们证明:(1)视觉区域V4中一个特征(物体的位置)的神经表征与几个背景特征的神经表征是正交的;(2)人类观察者精确判断物体位置的能力在很大程度上不受那些背景特征的影响;(3)物体和背景的许多特征(以及来自单独刺激集的物体的特征)在V4神经群体反应中是正交表征的。我们的观察结果与以下假设一致,即尽管自然视觉场景丰富多样,但正交神经表征能够支持对物体特征的稳定感知。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0d7/11821992/9480ea58c4e0/41598_2025_88910_Fig1_HTML.jpg

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