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猫初级视觉皮层中神经集合对条形物运动方向的时空编码。

Spatiotemporal encoding of a bar's direction of motion by neural ensembles in cat primary visual cortex.

作者信息

Warren David J, Koulakov Alex, Normann Richard A

机构信息

Department of Bioengineering, University of Utah, Salt Lake City, UT 84112-9458, USA.

出版信息

Ann Biomed Eng. 2004 Sep;32(9):1265-75. doi: 10.1114/b:abme.0000039360.10535.af.

Abstract

Directionally selective neurons strongly fire when presented with a preferred direction of motion of a bar and only weakly respond otherwise. Intuition suggests these "specialist" neurons would be better suited to report this stimulus feature to higher visual centers than "generalist" neurons, neurons that broadly modulate their activity to the feature. However, as stimuli are encoded not by one cell but by large neural ensembles, we have studied the role of single-cell receptive field properties in stimulus representation. Using regression error statistics, we compared the performance of direction-of-motion estimators, using ensembles of neurons selectively responding to direction of motion and estimators using ensembles not specializing to direction. We found that direction-selective ensembles were no better at representing a bar's direction of motion than nonselective ensembles. Quite the opposite, the nonselective unit ensembles provided a better estimate of the direction (standard deviation of the error of 33 degrees) than the direction-selective ensembles (standard deviation of the error of 42 degrees). The nonselective neurons provided information through a latency code that is apparent only when a neuron's activity is considered in the context of the responses of neighboring neurons. These results suggest that models utilizing both generalist and specialist neurons may better reflect the encoding mechanisms that take place in sensory pathways.

摘要

当呈现出棒的偏好运动方向时,方向选择性神经元会强烈放电,否则只会产生微弱反应。直觉表明,与“通才”神经元(即广泛调节其活动以适应特征的神经元)相比,这些“专家型”神经元更适合向更高的视觉中枢报告这种刺激特征。然而,由于刺激并非由单个细胞编码,而是由大型神经集合编码,我们研究了单细胞感受野特性在刺激表征中的作用。使用回归误差统计,我们比较了运动方向估计器的性能,一种是使用选择性响应运动方向的神经元集合,另一种是使用不专门针对方向的神经元集合。我们发现,方向选择性集合在表示棒的运动方向方面并不比非选择性集合更好。恰恰相反,非选择性单元集合比方向选择性集合能更好地估计方向(误差标准差为33度),而方向选择性集合的误差标准差为42度。非选择性神经元通过潜伏期编码提供信息,只有在考虑神经元活动与其相邻神经元反应的背景时,这种编码才会显现出来。这些结果表明,同时利用通才和专家型神经元的模型可能更好地反映感觉通路中发生的编码机制。

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