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反应机制在决定反应时间表现中的作用:重温皮埃隆定律。

The role of response mechanisms in determining reaction time performance: Piéron's law revisited.

作者信息

Stafford Tom, Gurney Kevin N

机构信息

University of Sheffield, Sheffield, England.

出版信息

Psychon Bull Rev. 2004 Dec;11(6):975-87. doi: 10.3758/bf03196729.

Abstract

A response mechanism takes evaluations of the importance of potential actions and selects the most suitable. Response mechanism function is a nontrivial problem that has not received the attention it deserves within cognitive psychology. In this article, we make a case for the importance of considering response mechanism function as a constraint on cognitive processes and emphasized links with the wider problem of behavioral action selection. First, we show that, contrary to previous suggestions, a well-known model of the Stroop task (Cohen, Dunbar, & McClelland, 1990) relies on the response mechanism for a key feature of its results-the interference-facilitation asymmetry. Second, we examine a variety of response mechanisms (including that in the model of Cohen et al., 1990) and show that they all follow a law analogous to Piéron's law in relating their input to reaction time. In particular, this is true of a decision mechanism not designed to explain RT data but based on a proposed solution to the general problem of action selection and grounded in the neurobiology of the vertebrate basal ganglia Finally, we show that the dynamics of simple artificial neurons also support a Piéron-like law.

摘要

一种反应机制会对潜在行动的重要性进行评估,并选择最合适的行动。反应机制的功能是一个重要问题,但在认知心理学领域尚未得到应有的关注。在本文中,我们阐述了将反应机制功能视为认知过程的一种限制因素的重要性,并强调了它与行为动作选择这一更广泛问题的联系。首先,我们表明,与之前的观点相反,一个著名的斯特鲁普任务模型(Cohen、Dunbar和McClelland,1990)的结果的一个关键特征——干扰-促进不对称性,依赖于反应机制。其次,我们研究了多种反应机制(包括Cohen等人1990年模型中的反应机制),并表明它们在将输入与反应时间联系起来时都遵循一条类似于皮埃龙定律的规律。特别是,对于一个并非旨在解释反应时间数据、而是基于对行动选择这一普遍问题的一种提议解决方案且以脊椎动物基底神经节的神经生物学为基础的决策机制而言,情况确实如此。最后,我们表明简单人工神经元的动力学也支持类似皮埃龙的定律。

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