Kangas Brian D, Bergman Jack
Behavioral Biology Laboratory, McLean Hospital, Harvard Medical School, Belmont, Massachusetts, USA.
Behav Pharmacol. 2017 Dec;28(8):623-629. doi: 10.1097/FBP.0000000000000356.
There is a growing need for new translational animal models designed to capture complex behavioral phenotypes implicated in addiction and other neuropsychiatric conditions. For example, a complete understanding of the effects of commonly abused drugs, as well as candidate medications, requires assessments of their effects on learning, memory, attention, and other cognition-related behavior. Modern touch-sensitive technology provides an extremely flexible means to expose an experimental subject to a variety of complex behavioral tasks designed to assay dimensions of cognitive function before, during, and after drug administration. In addition to tailored variants of gold-standard cognitive assessments, touchscreen chambers offer the ability to develop novel tasks based upon the researcher's needs. This methods perspective presents (i) a brief review of previous touchscreen-based animal studies, (ii) a primer on the construction of a touch-sensitive experimental chamber, and (iii) data from a proof-of-concept study examining cross-species continuity in performance across a diverse assortment of animal subjects (rats, marmosets, squirrel monkeys, and rhesus macaques) using the repeated acquisition task - a modern variant of a traditional animal model of learning. Taken together, the procedures and data discussed in this review illustrate the point that contemporary touchscreen methodology can be tailored to desired experimental goals and adapted to provide formal similarity in cognition-related tasks across experimental species. Moreover, touchscreen methodology allows for the development of new translational models that emerge through laboratory and clinical discovery to capture important dimensions of complex behavior and cognitive function.
对于旨在捕捉成瘾和其他神经精神疾病中涉及的复杂行为表型的新型转化动物模型的需求日益增长。例如,要全面了解常用滥用药物以及候选药物的作用,就需要评估它们对学习、记忆、注意力和其他认知相关行为的影响。现代触摸敏感技术提供了一种极其灵活的方法,可使实验对象接触各种复杂的行为任务,这些任务旨在在给药前、给药期间和给药后测定认知功能的各个方面。除了定制的金标准认知评估变体之外,触摸屏实验箱还能够根据研究人员的需求开发新任务。本方法视角文章呈现了:(i)对先前基于触摸屏的动物研究的简要回顾;(ii)关于构建触摸敏感实验箱的入门指南;以及(iii)来自一项概念验证研究的数据,该研究使用重复获取任务——一种传统动物学习模型的现代变体,检验了不同种类动物(大鼠、狨猴、松鼠猴和恒河猴)在行为表现上的跨物种连续性。总之,本综述中讨论的程序和数据表明,当代触摸屏方法可以根据期望的实验目标进行定制,并适用于在不同实验物种的认知相关任务中提供形式上的相似性。此外,触摸屏方法允许开发新的转化模型,这些模型通过实验室和临床发现而产生,以捕捉复杂行为和认知功能的重要方面。