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Technology or ecology? New tools to assess cognitive judgement bias in mice

机译:技术还是生态? 评估小鼠认知判断偏差的新工具

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Cognitive judgement bias tests have become important new tools for the assessment of animal emotions. They allow for the inference of an animal's emotional state based on ambiguous cue interpretations. As mice are the predominantly used animal model for cognitive and behavioural neuroscience, research in this field would considerably benefit from the development of suitable judgement bias tests for this species. Against this background, we aimed to implement two different active choice cognitive judgement bias paradigms for mice in a methodological study. For this purpose, two experiments were conducted: in experiment I, an automated, vision-based touchscreen technique was applied, allowing for the direct translation of tasks from rodents to humans and vice versa. Experiment II comprised a task relying on more ecologically relevant cues in form of tunnels of different lengths. While the touchscreen task was characterized by automation-related advantages such as the possibility to present many trials per session and a high convenience for the experimenter, the tunnel task was learned faster by the mice. In both tests, however, the response to the trained and ambiguous conditions resulted in a graded curve, the basic requirement for proving task validity. Thus, both the translational touchscreen task as well as the ecologically more relevant tunnel task could successfully be implemented and provide new tools for the future assessment of cognitive judgement biases in mice.
机译:认知判断偏差测试已成为评估动物情绪的重要新工具。它们允许基于模糊的提示解释的动物的情绪状态推理。由于小鼠是用于认知和行为神经科学的主要使用的动物模型,但该领域的研究将显着受益于该物种的合适判断偏差测试的发展。在此背景下,我们旨在在方法学研究中实施针对小鼠的两种不同的活性选择认知判断偏差范例。为此目的,进行了两个实验:在实验I中,应用自动化的视觉触摸屏技术,允许将任务的直接翻译从啮齿动物到人类,反之亦然。实验II包括一项依赖于不同长度的隧道形式更生态相关提示的任务。虽然触摸屏任务的特点是与自动化相关的优势,例如每次会话的许多试验的可能性和实验者的高便利性,但隧道任务由小鼠更快地学习。然而,在两个测试中,对训练有素和模糊条件的响应导致分级曲线,证明任务有效性的基本要求。因此,翻译触摸屏任务以及生态上更相关的隧道任务都可以成功实现,并为未来对小鼠中的认知判断偏差进行评估的新工具。

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