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Encoding and decoding neural population signals for two attributes of a stimulus

机译:对刺激的两个属性的神经种群信号进行编码和解码

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Stimulus is encoded by neural populations and then the brain can decide what happens in the practical situations from the population patterns of neural spiking. It is meaningful to implement computations by making use of the response of population of neurons to determine a certain stimulus or to obtain the values of related parameters. Neural populations cannot only encode a single attribute of a stimulus but also can encode various properties of a stimulus simultaneously. For example, by looking at a moving object we can estimate the direction and speed of it, which shows that the response of a population of optic neurons contain information about both the direction and speed. In this paper we present a simple model for reading neural population signals for the two attributes of a stimulus. We use Poisson distribution to describe the encoding process of neural populations and then to extract the values of the stimulus by Bayesian methods. We demonstrate that the nervous population can encode two properties of a stimulus and extract the two kinds of estimated values of the stimulus at the same time. The results show that we can obtain perfect estimates of two attributes of a stimulus from our simple model. Finally, we use Fisher information matrix to examine the influence of the tuning widths on the encoding efficiency.
机译:刺激由神经种群编码,然后大脑可以根据神经峰值的种群模式决定在实际情况下会发生什么。通过利用神经元群体的响应来确定某种刺激或获得相关参数的值来进行计算是有意义的。神经种群不仅可以编码刺激的单个属性,而且可以同时编码刺激的各种属性。例如,通过查看一个移动的物体,我们可以估计其方向和速度,这表明视神经细胞群的响应包含有关方向和速度的信息。在本文中,我们提出了一个简单的模型,用于读取刺激的两个属性的神经种群信号。我们使用泊松分布来描述神经种群的编码过程,然后通过贝叶斯方法提取刺激值。我们证明了神经人口可以编码刺激的两个属性,并同时提取两种刺激的估计值。结果表明,我们可以从我们的简单模型中获得对刺激的两个属性的完美估计。最后,我们使用Fisher信息矩阵来检查调整宽度对编码效率的影响。

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