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边缘相关活动并非解释人类视觉皮层中方向解码所必需的。

Edge-Related Activity Is Not Necessary to Explain Orientation Decoding in Human Visual Cortex.

作者信息

Wardle Susan G, Ritchie J Brendan, Seymour Kiley, Carlson Thomas A

机构信息

Department of Cognitive Science, Macquarie University, Sydney, 2109 New South Wales, Australia,

ARC Centre of Excellence in Cognition and Its Disorders, Macquarie University, Sydney, 2109 New South Wales, Australia.

出版信息

J Neurosci. 2017 Feb 1;37(5):1187-1196. doi: 10.1523/JNEUROSCI.2690-16.2016. Epub 2016 Dec 21.

Abstract

UNLABELLED

Multivariate pattern analysis is a powerful technique; however, a significant theoretical limitation in neuroscience is the ambiguity in interpreting the source of decodable information used by classifiers. This is exemplified by the continued controversy over the source of orientation decoding from fMRI responses in human V1. Recently Carlson (2014) identified a potential source of decodable information by modeling voxel responses based on the Hubel and Wiesel (1972) ice-cube model of visual cortex. The model revealed that activity associated with the edges of gratings covaries with orientation and could potentially be used to discriminate orientation. Here we empirically evaluate whether "edge-related activity" underlies orientation decoding from patterns of BOLD response in human V1. First, we systematically mapped classifier performance as a function of stimulus location using population receptive field modeling to isolate each voxel's overlap with a large annular grating stimulus. Orientation was decodable across the stimulus; however, peak decoding performance occurred for voxels with receptive fields closer to the fovea and overlapping with the inner edge. Critically, we did not observe the expected second peak in decoding performance at the outer stimulus edge as predicted by the edge account. Second, we evaluated whether voxels that contribute most to classifier performance have receptive fields that cluster in cortical regions corresponding to the retinotopic location of the stimulus edge. Instead, we find the distribution of highly weighted voxels to be approximately random, with a modest bias toward more foveal voxels. Our results demonstrate that edge-related activity is likely not necessary for orientation decoding.

SIGNIFICANCE STATEMENT

A significant theoretical limitation of multivariate pattern analysis in neuroscience is the ambiguity in interpreting the source of decodable information used by classifiers. For example, orientation can be decoded from BOLD activation patterns in human V1, even though orientation columns are at a finer spatial scale than 3T fMRI. Consequently, the source of decodable information remains controversial. Here we test the proposal that information related to the stimulus edges underlies orientation decoding. We map voxel population receptive fields in V1 and evaluate orientation decoding performance as a function of stimulus location in retinotopic cortex. We find orientation is decodable from voxels whose receptive fields do not overlap with the stimulus edges, suggesting edge-related activity does not substantially drive orientation decoding.

摘要

未标注

多变量模式分析是一项强大的技术;然而,神经科学中一个重大的理论局限在于解释分类器所使用的可解码信息来源时存在模糊性。这一点在关于人类V1区功能磁共振成像(fMRI)反应中方向解码来源的持续争议中得到了体现。最近,卡尔森(2014年)通过基于休伯尔和威塞尔(1972年)的视觉皮层冰块模型对体素反应进行建模,确定了一种潜在的可解码信息来源。该模型显示,与光栅边缘相关的活动随方向而协变,并且有可能用于区分方向。在此,我们通过实证评估“边缘相关活动”是否是人类V1区血氧水平依赖(BOLD)反应模式中方向解码的基础。首先,我们使用群体感受野建模系统地将分类器性能映射为刺激位置的函数,以分离每个体素与一个大的环形光栅刺激的重叠情况。在整个刺激范围内都可以进行方向解码;然而,对于感受野更靠近中央凹且与内边缘重叠的体素,解码性能达到峰值。关键的是,我们没有观察到如边缘理论所预测的在刺激外边缘处解码性能出现预期的第二个峰值。其次,我们评估了对分类器性能贡献最大的体素的感受野是否聚集在与刺激边缘视网膜定位相对应的皮质区域。相反,我们发现高权重体素的分布大致是随机的,只是略微偏向更靠近中央凹的体素。我们的结果表明,边缘相关活动对于方向解码可能并非必要。

意义声明

神经科学中多变量模式分析的一个重大理论局限在于解释分类器所使用的可解码信息来源时存在模糊性。例如,尽管方向柱的空间尺度比3T功能磁共振成像更精细,但仍可从人类V1区的BOLD激活模式中解码方向。因此,可解码信息的来源仍然存在争议。在此我们测试了与刺激边缘相关的信息是方向解码基础这一观点。我们绘制了V1区体素群体感受野,并将方向解码性能评估为视网膜定位皮质中刺激位置的函数。我们发现,方向可从感受野与刺激边缘不重叠的体素中解码出来,这表明边缘相关活动并未实质性地驱动方向解码。

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