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数值信息总是有益的吗?在加性和非加性任务中,言语和数值线索的整合。

Is numerical information always beneficial? Verbal and numerical cue-integration in additive and non-additive tasks.

机构信息

Department of Psychology, Uppsala University, Sweden.

Department of Psychology, Uppsala University, Sweden.

出版信息

Cognition. 2023 Nov;240:105584. doi: 10.1016/j.cognition.2023.105584. Epub 2023 Aug 30.

Abstract

When people use rule-based integration of abstracted cues to make multiple-cue judgments they tend to default to linear additive integration of the cues, which may interfere with efficient learning in non-additive tasks. We hypothesize that this effect becomes especially pronounced when cues are presented numerically rather than verbally, because numbers elicit expectations about a task with a simple numerical solution that can be appropriately addressed by linear and additive integration. This predicts that, relative to a verbal format, a numerical format should be advantageous for learning in additive tasks, but detrimental for learning in non-additive tasks. In two experiments, we find support for the hypothesis that a verbal format can improve learning in non-additive tasks. The division-of-labor between cognitive processes observed in previous research (Juslin et al., 2008), with cue abstraction in additive tasks and exemplar memory in non-additive tasks, was only present in conditions with numeric information and may therefore in part be driven by the use of numeric formats. This illustrates how surface characteristic of stimuli can elicit different priors about the nature of the variables and the generative model that produced the cues and the criterion. We fitted cue-abstraction and exemplar algorithms by PNP-modeling (Sundh et al., 2021). At the end of training both cue abstraction and exemplar memory processes primarily involved exact analytic processes marred by occasional error, rather than the noisy and approximate intuitive processes typically assumed in previous studies - specifically, cue abstraction was primarily implemented by number crunching and exemplar memory by rote memorization.

摘要

当人们使用基于规则的抽象线索进行多线索判断时,他们往往倾向于对线索进行线性加性整合,这可能会干扰非加性任务中的有效学习。我们假设,当线索以数字形式而不是以口头形式呈现时,这种效应会更加明显,因为数字会引发对具有简单数值解决方案的任务的期望,而这种解决方案可以通过线性和加性整合来适当处理。这预示着,与口头格式相比,数字格式应该有利于加性任务的学习,但不利于非加性任务的学习。在两项实验中,我们发现支持这样一种假设的证据,即口头格式可以改善非加性任务的学习。先前研究中观察到的认知过程的分工(Juslin 等人,2008 年),在加性任务中是线索抽象,在非加性任务中是范例记忆,只有在有数字信息的条件下才存在,因此可能部分是由数字格式的使用驱动的。这说明了刺激的表面特征如何引发关于变量的性质和产生线索和标准的生成模型的不同先验。我们通过 PNP 建模(Sundh 等人,2021 年)对线索抽象和范例记忆算法进行了拟合。在训练结束时,线索抽象和范例记忆过程主要涉及精确的分析过程,偶尔会出现错误,而不是以前研究中通常假设的嘈杂和近似的直觉过程 - 具体来说,线索抽象主要通过数字运算来实现,范例记忆通过死记硬背来实现。

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