Faculty of Psychology.
Institute for Internet Security.
J Exp Psychol Anim Learn Cogn. 2021 Jul;47(3):303-316. doi: 10.1037/xan0000290.
Perceptual decision making involves choices between alternatives based on sensory information. Studies in primates and rodents revealed a stochastic perceptual evidence accumulation process that, after reaching threshold, results in action execution. Birds represent a cognitively highly successful vertebrate class that has been evolving independent from mammals for more than 300 million years. The present study investigated whether perceptual decision making in pigeons shows behavioral and computational dynamics comparable to those in mammals and rodents. Using a novel "pigeon helmet" with liquid shutter displays that controls visual input to individual eyes/hemispheres with precise timing, we indeed revealed highly similar dynamics of perceptual decision making. Thus, both mammals and birds seem to share this core cognitive process that possibly represents a fundamental constituent of decision making throughout vertebrates. Interestingly, in our experiments we additionally discovered that both avian hemispheres start independent sensory accumulation processes without any major interhemispheric exchange. Because birds lack a corpus callosum and have only a small anterior commissure, they seem to be forced to decide on motor responses based on unihemispheric decisions under conditions of time pressure. (PsycInfo Database Record (c) 2021 APA, all rights reserved).
知觉决策涉及基于感觉信息在备选方案之间做出选择。在灵长类动物和啮齿类动物中的研究揭示了一种随机的知觉证据积累过程,该过程在达到阈值后会导致执行动作。鸟类是一种在认知上非常成功的脊椎动物,它们已经独立于哺乳动物进化了 3 亿多年。本研究调查了鸽子的知觉决策是否表现出与哺乳动物和啮齿动物相当的行为和计算动态。使用带有液体快门显示器的新型“鸽子头盔”,可以精确的时间控制对单个眼睛/半球的视觉输入,我们确实揭示了高度相似的知觉决策动态。因此,哺乳动物和鸟类似乎都共享这个核心认知过程,它可能代表了整个脊椎动物决策的基本组成部分。有趣的是,在我们的实验中,我们还发现,鸟类的两个半球在没有任何主要的半球间交换的情况下,开始独立的感觉积累过程。由于鸟类没有胼胝体,只有一个小的前连合,因此它们似乎在时间压力下被迫根据单半球决策做出运动反应。(PsycInfo 数据库记录(c)2021 APA,保留所有权利)。