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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The contribution of spike threshold to acoustic feature selectivity, spike information content, and information throughput.
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The contribution of spike threshold to acoustic feature selectivity, spike information content, and information throughput.

机译:尖峰阈值对声学特征选择性,尖峰信息内容和信息吞吐量的贡献。

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摘要

Hypotheses of sensory coding range from the notion of nonlinear "feature detectors" to linear rate coding strategies. Here, we report that auditory neurons exhibit a novel trade-off in the relationship between sound selectivity and the information that can be communicated to a postsynaptic cell. Recordings from the cat inferior colliculus show that neurons with the lowest spike rates reliably signal the occurrence of stereotyped stimulus features, whereas those with high response rates exhibit lower selectivity. The highest information conveyed by individual action potentials comes from neurons with low spike rate and high selectivity. Surprisingly, spike information is inversely related to spike rates, following a trend similar to that of feature selectivity. Information per time interval, however, was proportional to measured spike rates. A neuronal model based on the spike threshold of the synaptic drive accurately accounts for this trade-off: higher thresholds enhance the spiking fidelity at the expense of limiting the total communicated information. Such a constraint on the specificity and throughput creates a continuum in the neural code with two extreme forms of information transfer that likely serve complementary roles in the representation of the auditory environment.
机译:感觉编码的假设范围从非线性“特征检测器”的概念到线性速率编码策略。在这里,我们报告说,听觉神经元在声音选择性和可以传达给突触后细胞的信息之间的关系中表现出一种新的权衡。猫下丘脑的记录显示,尖峰频率最低的神经元可靠地表明了刻板印象刺激特征的发生,而响应速度高的神经元则选择性较低。单个动作电位传达的最高信息来自尖峰率低且选择性高的神经元。令人惊讶的是,遵循与特征选择性相似的趋势,峰值信息与峰值速率成反比。但是,每个时间间隔的信息与测得的尖峰频率成正比。基于突触驱动的峰值阈值的神经元模型可以准确地说明这一折衷:较高的阈值会增强峰值保真度,但会限制总传达的信息。这种对特异性和通量的限制在神经代码中创建了一个连续体,具有两种极端的信息传递形式,可能在听觉环境的表示中起到补充作用。

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