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Numerical Exploration Of The Influence Of Neural Noise On The Psychometric Function At Low Stimulation Intensity Levels

机译:低刺激强度水平下神经噪声对心理功能影响的数值研究

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The relationship between stimulus intensity and the probability of detecting the presence of the stimulus is described by the psychometrical function. The probabilistic nature of this relationship is based on the stochastic behaviour of sensory neural channels and sensory networks involved in perceptual processing (Kiang 1968). This study tries to establish a continuum of variability across different levels of integration in the central nervous system. Once the opening and closing times of ionic channels was simulated, a threshold to the collective behaviour of voltage-gated ionic channels was imposed in order to generate the spike train of a single neuron. Afterwards, the trains of spikes of different neurons were added up, simulating the activity of a sensory nerve. By adding the activity due to the stimulus to the spontaneous neural behaviour, the psychometric function was simulated using a thresholding approach. The results can replicate the stochastic resonance phenomenon, but also open up the possibility that attentional phenomena can be mediated not only by increasing neural activity (bursting or oscillatory), but also by increasing noise at the neural level.
机译:刺激强度与检测到刺激存在的可能性之间的关系由心理计量功能描述。这种关系的概率性质基于感知过程中涉及的感觉神经通道和感觉网络的随机行为(Kiang 1968)。这项研究试图在中枢神经系统的不同整合水平上建立一个连续的变异性。一旦模拟了离子通道的打开和关闭时间,就会对电压门控离子通道的集体行为施加阈值,以生成单个神经元的尖峰序列。然后,将不同神经元的尖峰串加起来,模拟感觉神经的活动。通过将刺激引起的活动添加到自发的神经行为中,使用阈值方法模拟了心理功能。结果可以复制随机共振现象,但也有可能不仅可以通过增加神经活动(爆发或振荡)来介导注意力现象,还可以通过在神经水平上增加噪声来介导注意力现象。

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