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认知方面的经验教训:用于测量鱼类空间学习的迷宫设计与程序综述。

Lessons in cognition: A review of maze designs and procedures used to measure spatial learning in fish.

作者信息

Munson Amelia, DePasquale Cairsty

机构信息

Department of Wildlife, Fish and Environmental Studies, Swedish University of Agricultural Sciences, Umeå, Sweden.

Department of Biology, Pennsylvania State University-Altoona, Altoona, Pennsylvania, USA.

出版信息

J Fish Biol. 2024 Sep 12. doi: 10.1111/jfb.15918.

Abstract

The use of different mazes to assess spatial learning has become more common in fish behavior studies in recent decades. This increase in fish cognition research has opened the door to numerous possibilities for exciting and diverse questions, such as identifying ecological drivers of spatial cognition and understanding the role individual variation plays in navigational abilities. There are many different types of mazes, each with its own specific considerations, making it challenging to determine exactly which spatial test is the most relevant and appropriate for a particular experiment. Many spatial mazes, such as the T-maze and Y-maze, have been successfully adapted from rodent studies, particularly with respect to zebrafish, a widely accepted non-mammalian model in biomedical studies. Standardization across studies is increasing with these easily accessible maze designs, validating them for use in fish; however, variations in design (e.g., length of arms and scale) and procedure still exist, and the impact of these variations on results is largely unknown. The efforts to standardize mazes outside zebrafish work are also more limited. Other mazes have been developed specifically for use on fish, with design modifications varying widely, making it difficult to draw comparisons. In this review, we have highlighted the many design and procedural elements that should be considered for the acquisition of reliable behavioral data, with the goal of drawing readers' attention to aspects of experimentation that are often not given the careful consideration that they deserve. We then argue that additional focused research and reporting is needed to produce more reliable methods in spatial learning research across a broader range of subjects.

摘要

近几十年来,在鱼类行为研究中,使用不同的迷宫来评估空间学习变得越来越普遍。鱼类认知研究的这种增加为众多令人兴奋和多样的问题打开了大门,例如确定空间认知的生态驱动因素以及理解个体差异在导航能力中所起的作用。有许多不同类型的迷宫,每种都有其特定的考虑因素,因此很难确切确定哪种空间测试与特定实验最相关且最合适。许多空间迷宫,如T型迷宫和Y型迷宫,已成功从啮齿动物研究中改编而来,特别是对于斑马鱼,它是生物医学研究中广泛接受的非哺乳动物模型。随着这些易于使用的迷宫设计,跨研究的标准化程度正在提高,验证了它们在鱼类中的应用;然而,设计(例如臂的长度和规模)和程序上的差异仍然存在,而且这些差异对结果的影响在很大程度上尚不清楚。在斑马鱼研究之外对迷宫进行标准化的努力也较为有限。其他迷宫是专门为鱼类开发的,设计修改差异很大,难以进行比较。在这篇综述中,我们强调了在获取可靠行为数据时应考虑的许多设计和程序要素,目的是引起读者对实验中那些往往未得到应有关注的方面的注意。然后我们认为,需要进行更多有针对性的研究和报告,以便在更广泛的研究对象中产生更可靠的空间学习研究方法。

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