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决策与行动的综合理论。

An integrated theory of deciding and acting.

机构信息

Laboratoire de Recherches Integratives en Neurosciences et Psychologie Cognitive UR 481.

Department of Psychological Sciences.

出版信息

J Exp Psychol Gen. 2021 Dec;150(12):2435-2454. doi: 10.1037/xge0001063. Epub 2021 Aug 9.

Abstract

This article presents a theory in which motor execution in perceptual decision-making tasks is determined by the same evolving decision variable that drives response time. The theory builds upon recent insights from the neuroscience of decision-making and motor control. It is formalized as an extension of Ratcliff's diffusion model, and assumes that two thresholds operate on the evidence accumulation decision variable. The first threshold, referred to as electromyographic (EMG) threshold, marks the onset of electrical activity in the response-relevant muscle and the beginning of force production. The second threshold corresponds to the response. The theory makes several benchmark predictions. Notably, the mean duration of motor execution, as quantified by the mean latency between EMG onset and the response, should depend on the rate of evidence accumulation, and should thus increase as the perceptual difficulty of the task increases. We tested these predictions in a paradigmatic perceptual decision-making task, the random dot motion task, and recorded the EMG activity of response-relevant muscles. The behavioral and EMG data provide very strong evidence for each prediction. A final quantitative evaluation of the model showed good fits to these data. The theory resolves conflicting findings in the fields of mathematical psychology, motor control, and decision neurosciences. (PsycInfo Database Record (c) 2022 APA, all rights reserved).

摘要

本文提出了一种理论,即在感知决策任务中,运动执行由驱动反应时的相同演变决策变量决定。该理论建立在决策和运动控制神经科学的最新见解之上。它被形式化为 Ratcliff 扩散模型的扩展,并假设两个阈值作用于证据积累决策变量。第一个阈值,称为肌电图(EMG)阈值,标志着与反应相关的肌肉中电活动的开始和力产生的开始。第二个阈值对应于反应。该理论做出了几个基准预测。值得注意的是,运动执行的平均持续时间,即从肌电图起始到反应的平均潜伏期来量化,应该取决于证据积累的速度,因此随着任务感知难度的增加而增加。我们在一个典型的感知决策任务,即随机点运动任务中测试了这些预测,并记录了与反应相关的肌肉的肌电图活动。行为和肌电图数据为每个预测提供了非常有力的证据。对模型的最终定量评估表明,这些数据拟合得很好。该理论解决了数学心理学、运动控制和决策神经科学领域的相互矛盾的发现。(PsycInfo 数据库记录(c)2022 APA,保留所有权利)。

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