基于箭鱼运动的图地分割

IF 1.9 2区 生物学 Q3 BEHAVIORAL SCIENCES
Svetlana Volotsky, Ronen Segev
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引用次数: 0

摘要

图地分割是视觉感知的一个基本过程,它涉及将视觉刺激物分割成不同的有意义物体及其周围环境,从而使大脑能够解释和理解复杂的视觉场景。哺乳动物的图地分割能力各不相同,灵长类动物在图地分割任务中表现良好,而啮齿类动物则表现较差。为了探索远洋鱼类的图地分割能力,我们研究了箭鱼这种视觉猎手是如何进行图地分割的。我们训练箭鱼从背景中分辨出前景物体,其中的图形是由运动以及强度和纹理的不连续性定义的。具体来说,人物是由光栅、自然纹理和与背景反相运动的随机噪音定义的。箭鱼很好地完成了任务,并能区分所有三种类型的图形和地面。它们的表现可与灵长类动物媲美,并优于啮齿类动物。这些研究结果表明,在箭鱼视觉系统中存在一个复杂的视觉过程,能够将图形与背景区分开来,并为这种动物的物体识别提供了启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Figure-ground segmentation based on motion in the archerfish

Figure-ground segmentation based on motion in the archerfish

Figure-ground segmentation is a fundamental process in visual perception that involves separating visual stimuli into distinct meaningful objects and their surrounding context, thus allowing the brain to interpret and understand complex visual scenes. Mammals exhibit varying figure-ground segmentation capabilities, ranging from primates that can perform well on figure-ground segmentation tasks to rodents that perform poorly. To explore figure-ground segmentation capabilities in teleost fish, we studied how the archerfish, an expert visual hunter, performs figure-ground segmentation. We trained archerfish to discriminate foreground objects from the background, where the figures were defined by motion as well as by discontinuities in intensity and texture. Specifically, the figures were defined by grating, naturalistic texture, and random noise moving in counterphase with the background. The archerfish performed the task well and could distinguish between all three types of figures and grounds. Their performance was comparable to that of primates and outperformed rodents. These findings suggest the existence of a complex visual process in the archerfish visual system that enables the delineation of figures as distinct from backgrounds, and provide insights into object recognition in this animal.

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来源期刊
Animal Cognition
Animal Cognition 生物-动物学
CiteScore
4.50
自引率
18.50%
发文量
125
审稿时长
4-8 weeks
期刊介绍: Animal Cognition is an interdisciplinary journal offering current research from many disciplines (ethology, behavioral ecology, animal behavior and learning, cognitive sciences, comparative psychology and evolutionary psychology) on all aspects of animal (and human) cognition in an evolutionary framework. Animal Cognition publishes original empirical and theoretical work, reviews, methods papers, short communications and correspondence on the mechanisms and evolution of biologically rooted cognitive-intellectual structures. The journal explores animal time perception and use; causality detection; innate reaction patterns and innate bases of learning; numerical competence and frequency expectancies; symbol use; communication; problem solving, animal thinking and use of tools, and the modularity of the mind.
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