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皮层特征图对短线方向编码的影响。

The influence of cortical feature maps on the encoding of the orientation of a short line.

作者信息

Shokhirev K N, Kumar T, Glaser D A

机构信息

Department of Physics, University of California, Berkeley, CA 94720-3206, USA.

出版信息

J Comput Neurosci. 2006 Jun;20(3):285-97. doi: 10.1007/s10827-006-6485-7. Epub 2006 Apr 22.

Abstract

The inhomogeneous distribution of the receptive fields of cortical neurons influences the cortical representation of the orientation of short lines seen in visual images. We construct a model of the response of populations of neurons in the human primary visual cortex by combining realistic response properties of individual neurons and cortical maps of orientation and location preferences. The encoding error, which characterizes the difference between the parameters of a visual stimulus and their cortical representation, is calculated using Fisher information as the square root of the variance of a statistically efficient estimator. The error of encoding orientation varies considerably with the location and orientation of the short line stimulus as modulated by the underlying orientation preference map. The average encoding error depends only weakly on the structure of the orientation preference map and is much smaller than the human error of estimating orientation measured psychophysically. From this comparison we conclude that the actual mechanism of orientation perception does not make efficient use of all the information available in the neuronal responses and that it is the decoding of visual information from neuronal responses that limits psychophysical performance.

摘要

皮层神经元感受野的非均匀分布会影响视觉图像中短线方向的皮层表征。我们通过结合单个神经元的实际响应特性以及方向和位置偏好的皮层图谱,构建了人类初级视觉皮层中神经元群体的响应模型。编码误差表征了视觉刺激参数与其皮层表征之间的差异,它是使用费希尔信息作为统计有效估计量方差的平方根来计算的。编码方向的误差会随着短线刺激的位置和方向而显著变化,这受到潜在方向偏好图谱的调制。平均编码误差仅微弱地依赖于方向偏好图谱的结构,并且远小于通过心理物理学测量的人类估计方向的误差。通过这种比较我们得出结论,方向感知的实际机制并未有效利用神经元响应中可用的所有信息,并且正是从神经元响应中解码视觉信息限制了心理物理学表现。

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