Florey Institute of Neuroscience and Mental Health, Melbourne Brain Centre, University of Melbourne, Parkville, VIC 3010, Australia.
Florey Institute of Neuroscience and Mental Health, Melbourne Brain Centre, University of Melbourne, Parkville, VIC 3010, Australia; Department of Anatomy and Neuroscience, University of Melbourne, Parkville, VIC 3010, Australia.
Neuropharmacology. 2017 May 1;117:219-226. doi: 10.1016/j.neuropharm.2017.02.009. Epub 2017 Feb 11.
Environmental enrichment (EE) is any positive modification of the 'standard housing' (SH) conditions in which laboratory animals are typically held, usually involving increased opportunity for cognitive stimulation and physical activity. EE has been reported to enhance baseline performance of wild-type animals on traditional cognitive behavioural tasks. Recently, touchscreen operant testing chambers have emerged as a way of performing rodent cognitive assays, providing greater reproducibility, translatability and automatability. Cognitive tests in touchscreen chambers are performed over numerous trials and thus experimenters have the power to detect subtle enhancements in performance. We used touchscreens to analyse the effects of EE on reversal learning, visual discrimination and hippocampal-dependent spatial pattern separation and working memory. We hypothesized that EE would enhance the performance of mice on cognitive touchscreen tasks. Our hypothesis was partially supported in that EE induced enhancements in cognitive flexibility as observed in visual discrimination and reversal learning improvements. However, no other significant effects of EE on cognitive performance were observed. EE decreased the activity level of mice in the touchscreen chambers, which may influence the enrichment level of the animals. Although we did not see enhancements on all hypothesized parameters, our testing paradigm is capable of detecting EE-induced improved cognitive flexibility in mice, which has implications for both understanding the mechanisms of EE and improving screening of putative cognitive-enhancing therapeutics.
环境丰富(EE)是对实验室动物通常所处的“标准住房”(SH)条件的任何积极改变,通常涉及增加认知刺激和身体活动的机会。EE 已被报道可增强野生型动物在传统认知行为任务中的基线表现。最近,触摸屏操作测试室已成为进行啮齿动物认知测定的一种方法,提供了更高的重现性、可转移性和自动化。触摸屏室中的认知测试需要进行多次试验,因此实验者有能力检测到性能的微小提高。我们使用触摸屏分析 EE 对反转学习、视觉辨别以及海马依赖性空间模式分离和工作记忆的影响。我们假设 EE 将提高小鼠在认知触摸屏任务上的表现。我们的假设部分得到了支持,因为 EE 诱导了视觉辨别和反转学习改善中的认知灵活性增强。然而,没有观察到 EE 对认知表现的其他显著影响。EE 降低了小鼠在触摸屏室中的活动水平,这可能会影响动物的丰富度水平。尽管我们没有在所有假设的参数上看到增强,但我们的测试范式能够检测到 EE 诱导的小鼠认知灵活性的提高,这对理解 EE 的机制和改善潜在认知增强治疗的筛选都具有意义。