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通过正交化加工速度和深度探究 SNARC 效应的双通道模型。

Probing the Dual-Route Model of the SNARC Effect by Orthogonalizing Processing Speed and Depth.

机构信息

Department of Psychology, Humboldt-Universität zu Berlin, Berlin, Germany.

Department of Psychology, Universität Potsdam, Potsdam, Germany.

出版信息

Exp Psychol. 2023 Jan;70(1):1-13. doi: 10.1027/1618-3169/a000577.

Abstract

The dual-route model explains the SNARC (Spatial-Numerical Association of Response Codes) effect assuming two routes of parallel information processing: the unconditional route (automatic activation of pre-existing links) and the conditional route (activation of task-specific links). To test predictions derived from this model, we evaluated whether response latency in superficial number processing modulates the SNARC effect in a color task (participants judged the color of a number). In Experiment 1, participants performed a parity task, an easy color task (short RTs), and a difficult color task (RTs similar to those of the parity task). A SNARC effect emerged only in the parity task. In Experiment 2, participants performed a color task and a secondary task under four conditions chosen to orthogonally manipulate response latency (short vs. long) and processing depth (semantic vs. perceptual). Only the long-latency perceptual-processing condition elicited a SNARC effect. To explain these results, we suggest that the cognitive resources required by a secondary task might dilute the SNARC effect. Our results indicate that the dual-route model should be modified to take into account additional factors (e.g., working memory load) that influence the level of activation of the unconditional route.

摘要

双重路径模型通过假设两种平行信息处理路径来解释 SNARC(空间-数字反应代码关联)效应:无条件路径(自动激活预先存在的链接)和条件路径(激活特定任务的链接)。为了测试该模型所衍生的预测,我们评估了在颜色任务(参与者判断数字的颜色)中,浅层数字处理的反应时是否会调节 SNARC 效应。在实验 1 中,参与者执行了奇偶任务、简单颜色任务(短反应时)和困难颜色任务(反应时与奇偶任务相似)。仅在奇偶任务中出现了 SNARC 效应。在实验 2 中,参与者在四个条件下执行颜色任务和次要任务,这些条件是通过正交操纵反应时(短 vs. 长)和加工深度(语义 vs. 知觉)来选择的。只有长时反应时知觉加工条件引起了 SNARC 效应。为了解释这些结果,我们建议对双重路径模型进行修改,以纳入影响无条件路径激活水平的其他因素(例如工作记忆负荷)。我们的结果表明,应修改双重路径模型以考虑其他因素(例如工作记忆负荷),这些因素会影响无条件路径的激活水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3be7/10388237/c9c27594d4ac/zea_70_1_1_fig1a.jpg

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