图像处理中的多重心理表征。

Psychological Research Pub Date : 2022-04-01 Epub Date: 2021-06-10 DOI:10.1007/s00426-021-01541-2
Wolfgang Schnotz, Georg Hauck, Neil H Schwartz
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引用次数: 4

摘要

本文探讨了目标导向的图像学习是否会导致不同目的的不同有用的多重心理表征。本文进一步探讨了提示对图像处理的影响。研究人员向136名大学生展示了一个虚构城市的地图。一半的参与者被要求学习他们的地图作为准备,尽可能准确地从记忆中画出它(PrepDraw),这应该刺激创造一个详细的表面表示。另一半被要求学习地图,为寻找从不同地点到其他地点的最短交通连接做准备(PrepConnect),这应该会刺激以任务为导向的深层结构表征(心智模型)的构建。在两个实验组中,三分之一的参与者在没有提示的情况下收到了地图。另外三分之一的人收到了带有调查提示的地图(刺激处理什么是在哪里),最后三分之一的人收到了带有连接提示的地图(刺激处理如何连接火车站)。在接下来的测试阶段,参与者接受了一个识别任务、一个回忆任务和一个推理任务。对于识别和召回,计算两个表面结构分数(范围,准确性)和两个深层结构分数(范围,准确性)。推理任务也用于表明深层结构的准确性。在表面结构相关变量方面,PrepDraw组优于PrepConnect组,而在深层结构相关变量方面,PrepConnect组优于PrepDraw组。与指示一致的提示不能增强地图处理,而与指示不一致的提示往往会干扰学习。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Multiple mental representations in picture processing.

Multiple mental representations in picture processing.

Multiple mental representations in picture processing.

Multiple mental representations in picture processing.

This article investigates whether goal-directed learning of pictures leads to multiple mental representations which are differently useful for different purposes. The paper further investigates the effects of prompts on picture processing. 136 undergraduate students were presented maps of a fictitious city. One half of the participants were instructed to learn their map as preparation to draw it from memory as precisely as possible (PrepDraw), which should stimulate the creation of an elaborated surface representation. The other half were instructed to learn the map as preparation for finding the shortest traffic connection from various locations to other locations (PrepConnect), which should stimulate the construction of a task-oriented deep-structure representation (mental model). Within both experimental groups, one-third of the participants received the map without prompts. Another third received the map with survey prompts (stimulating processing of what is where), and the final third received the map with connect prompts (stimulating processing of how train stations are connected). In the following test phase, participants received a recognition task, a recall task, and an inference task. For recognition and recall, two surface structure scores (extent, accuracy) and two deep structure scores (extent, accuracy) were calculated. The inference task served also to indicate deep structure accuracy. The PrepDraw group outperformed the PrepConnect group in terms of surface structure related variables, whereas the PrepConnect group outperformed the PrepDraw group in terms of deep structure-related variables. Map processing was not enhanced by prompts aligned with the instruction, but non-aligned prompts tended to interfere with learning.

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