最佳显著性理论
计算机科学
召回
视觉短时记忆
集合(抽象数据类型)
视觉记忆
标志性记忆
外显记忆
符号(正式)
背景(考古学)
认知心理学
认知
认知科学
可视对象
识别记忆
人工智能
情景记忆
心理学
刺激(心理学)
长期记忆
内存错误
内隐记忆
生成语法
代表(政治)
编码(内存)
人类记忆
视觉对象识别的认知神经科学
组分(热力学)
构造(python库)
对象(语法)
记忆模型
分类
沟通
视觉感受
备忘录
作者
Brady R. T. Roberts,Wilma A. Bainbridge
标识
DOI:10.1073/pnas.2530745123
摘要
Symbols may represent the first form of human visual communication, yet little is known about the cognitive and neural mechanisms supporting memory for these pervasive graphics. By investigating memory for everyday symbols, we can understand how abstract concepts are concretized with simple referents and later processed in visual memory systems. Recently, symbols have been found to be highly memorable, especially relative to words, but it remains unclear what drives their heightened memorability. We identified the key visual and conceptual attributes driving high memorability for symbols. Participants were tested on their memory for conventional symbols (e.g., !@#$%) before sorting them based on visual or conceptual features. Principal component analyses performed on the sorting data revealed which of these features predict memory for symbols. Generative AI was then used to accentuate or downplay these predictive features to create a set of memorable and forgettable novel symbols. A memory test revealed that symbols designed to be memorable were not only better recognized than those designed to be forgettable, but they also afforded superior recall of associated abstract words. This work demonstrates that certain stimulus features drive memory for images beyond distinctiveness or context and offers clear evidence that memory can be intentionally engineered.
科研通智能强力驱动
Strongly Powered by AbleSci AI