Department of Psychological and Brain Sciences, University of Iowa, Iowa City, Iowa, USA.
Department of Experimental Psychology and The Alan Turing Institute, University College London, London, UK.
Genes Brain Behav. 2021 Jan;20(1):e12665. doi: 10.1111/gbb.12665. Epub 2020 Aug 4.
Categorization is a fundamental cognitive function that organizes our experiences into meaningful "chunks." This category knowledge can then be generalized to novel stimuli and situations. Multiple clinical populations, including people with Parkinson's disease, amnesia, autism, ADHD and schizophrenia, have impairments in the acquisition and use of categories. Although rodent research is well suited for examining the neural mechanisms underlying cognitive functions, many rodent cognitive tasks have limited translational value. To bridge this gap, we use touchscreens to permit greater flexibility in stimulus presentation and task design, track key dependent measures, and minimize experimenter involvement. Touchscreens offer a valuable tool for creating rodent cognitive tasks that are directly comparable to tasks used with humans. Touchscreen tasks are also readily used with cutting-edge neuroscientific methods that are difficult to do in humans such as optogenetics, chemogenetics, neurophysiology and calcium imaging (using miniscopes). In this review, we show advantages of touchscreen-based tasks for studying category learning in rats. We also address multiple factors for consideration when designing category learning tasks, including the limitations of the rodent visual system, experimental design, and analysis strategies.
分类是一种基本的认知功能,它将我们的经验组织成有意义的“块”。然后,这种类别知识可以推广到新的刺激和情境中。包括帕金森病患者、遗忘症患者、自闭症患者、多动症患者和精神分裂症患者在内的多种临床人群在类别获取和使用方面存在障碍。尽管啮齿动物研究非常适合研究认知功能的神经机制,但许多啮齿动物认知任务的转化价值有限。为了弥合这一差距,我们使用触摸屏来允许在刺激呈现和任务设计方面具有更大的灵活性,跟踪关键的依赖度量,并最大限度地减少实验者的参与。触摸屏为创建与人类使用的任务直接可比的啮齿动物认知任务提供了有价值的工具。触摸屏任务也可以很容易地与前沿神经科学方法(如光遗传学、化学遗传学、神经生理学和钙成像(使用微型显微镜))一起使用,而这些方法在人类中很难进行。在这篇综述中,我们展示了基于触摸屏的任务在研究大鼠类别学习方面的优势。我们还讨论了设计类别学习任务时需要考虑的多个因素,包括啮齿动物视觉系统、实验设计和分析策略的局限性。