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Time-varying boundaries for diffusion models of decision making and response time

机译:决策和响应时间的扩散模型的时变边界

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摘要

Diffusion models are widely-used and successful accounts of the time course of two-choice decision making. Most diffusion models assume constant boundaries, which are the threshold levels of evidence that must be sampled from a stimulus to reach a decision. We summarize theoretical results from statistics that relate distributions of decisions and response times to diffusion models with time-varying boundaries. We then develop a computational method for finding time-varying boundaries from empirical data, and apply our new method to two problems. The first problem involves finding the time-varying boundaries that make diffusion models equivalent to the alternative sequential sampling class of accumulator models. The second problem involves finding the time-varying boundaries, at the individual level, that best fit empirical data for perceptual stimuli that provide equal evidence for both decision alternatives. We discuss the theoretical and modeling implications of using time-varying boundaries in diffusion models, as well as the limitations and potential of our approach to their inference.
机译:扩散模型是两选择决策的时间过程的广泛使用和成功的解释。大多数扩散模型假设边界恒定,边界是必须从刺激中取样才能做出决定的证据的阈值水平。我们总结了统计数据的理论结果,这些统计数据将决策和响应时间的分布与具有时变边界的扩散模型相关联。然后,我们开发了一种从经验数据中查找时变边界的计算方法,并将我们的新方法应用于两个问题。第一个问题涉及找到使扩散模型等效于累加器模型的替代顺序采样类的时变边界。第二个问题涉及在个体水平上找到最适合经验数据的时变边界,这些经验数据为两种决策选择提供了相等的证据。我们讨论了在扩散模型中使用时变边界的理论和建模含义,以及我们进行推断的方法的局限性和潜力。

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