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Analytical Calculation of Errors in Time and Value Perception Due to a Subjective Time Accumulator: A Mechanistic Model and the Generation of Weber’s Law

机译:主观时间积累者在时间和价值观念方面的错误的分析计算:一种力学模型和韦伯定律的产生

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摘要

It has been previously shown (Namboodiri, Mihalas, Marton, & Hussain Shuler, ) that an evolutionary theory of decision making and time perception is capable of explaining numerous behavioral observations regarding how humans and animals decide between differently delayed rewards of differing magnitudes and how they perceive time. An implementation of this theory using a stochastic drift-diffusion accumulator model (Namboodiri, Mihalas, & Hussain Shuler, ) showed that errors in time perception and decision making approximately obey Weber’s law for a range of parameters. However, prior calculations did not have a clear mechanistic underpinning. Further, these calculations were only approximate, with the range of parameters being limited. In this letter, we provide a full analytical treatment of such an accumulator model, along with a mechanistic implementation, to calculate the expression of these errors for the entirety of the parameter space. In our mechanistic model, Weber’s law results from synaptic facilitation and depression within the feedback synapses of the accumulator. Our theory also makes the prediction that the steepness of temporal discounting can be affected by requiring the precise timing of temporal intervals. Thus, by presenting exact quantitative calculations, this work provides falsifiable predictions for future experimental testing.
机译:先前已经证明(Namboodiri,Mihalas,Marton和Hussain Shuler),决策和时间知觉的进化理论能够解释关于人类和动物如何决定不同幅度的不同延迟奖励以及它们如何相互作用的许多行为观察。感知时间。使用随机漂移扩散累加器模型(Namboodiri,Mihalas和Hussain Shuler,)对该理论的实施表明,在时间感知和决策方面的误差对于一系列参数大致服从韦伯定律。但是,先前的计算并没有明确的机制基础。此外,这些计算仅是近似的,参数范围受到限制。在这封信中,我们对这种累加器模型进行了全面的分析处理,并提供了一种机械实现,以针对整个参数空间计算这些误差的表达式。在我们的机械模型中,韦伯定律源自累加器反馈突触内的突触促进和抑制。我们的理论还做出了这样的预测:时间折现的陡度可能会受到要求时间间隔精确计时的影响。因此,通过提供精确的定量计算,这项工作为将来的实验测试提供了可证伪的预测。

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