The adaptive analysis of visual cognition using genetic algorithms.

IF 1.3 4区 心理学 Journal of Experimental Psychology-Animal Learning and Cognition Pub Date : 2013-10-01 Epub Date: 2013-09-02 DOI:10.1037/a0034074
Robert G Cook, Muhammad A J Qadri
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引用次数: 10

Abstract

Two experiments used a novel, open-ended, and adaptive test procedure to examine visual cognition in animals. Using a genetic algorithm, a pigeon was tested repeatedly from a variety of different initial conditions for its solution to an intermediate brightness search task. On each trial, the animal had to accurately locate and peck a target element of intermediate brightness from among a variable number of surrounding darker and lighter distractor elements. Displays were generated from 6 parametric variables, or genes (distractor number, element size, shape, spacing, target brightness, and distractor brightness). Display composition changed over time, or evolved, as a function of the bird's differential accuracy within the population of values for each gene. Testing 3 randomized initial conditions and 1 set of controlled initial conditions, element size and number of distractors were identified as the most important factors controlling search accuracy, with distractor brightness, element shape, and spacing making secondary contributions. The resulting changes in this multidimensional stimulus space suggested the existence of a set of conditions that the bird repeatedly converged upon regardless of initial conditions. This psychological "attractor" represents the cumulative action of the cognitive operations used by the pigeon in solving and performing this search task. The results are discussed regarding their implications for visual cognition in pigeons and the usefulness of adaptive, subject-driven experimentation for investigating human and animal cognition more generally.

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基于遗传算法的视觉认知自适应分析。
两个实验使用了一种新颖的、开放式的和适应性的测试程序来检查动物的视觉认知。利用遗传算法,在不同初始条件下反复测试鸽子对中等亮度搜索任务的解。在每次试验中,动物必须从周围不同数量的较暗和较亮的干扰元素中准确地定位并啄出一个中等亮度的目标元素。显示由6个参数变量或基因(干扰物数量、元素大小、形状、间距、目标亮度和干扰物亮度)生成。显示成分随着时间的推移而变化,或者进化,作为鸟类在每个基因值的群体中不同精度的函数。通过对3个随机初始条件和1组受控初始条件的检验,发现干扰物大小和干扰物数量是影响搜索精度的最重要因素,干扰物亮度、干扰物形状和干扰物间距次之。在这个多维刺激空间中产生的变化表明,存在一组条件,无论初始条件如何,鸟类都会反复收敛。这个心理“吸引子”代表了鸽子在解决和执行这个搜索任务时所使用的认知操作的累积行为。研究结果讨论了它们对鸽子视觉认知的影响,以及适应性、受试者驱动实验对更广泛地研究人类和动物认知的有用性。
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来源期刊
自引率
23.10%
发文量
0
审稿时长
>12 weeks
期刊介绍: The Journal of Experimental Psychology: Animal Learning and Cognition publishes experimental and theoretical studies concerning all aspects of animal behavior processes.
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