Emmer Kathryn M, Russart Kathryn L G, Walker William H, Nelson Randy J, DeVries A Courtney
Department of Neuroscience, The Ohio State University Wexner Medical Center.
Department of Behavioral Medicine and Psychiatry, West Virginia University.
Behav Neurosci. 2018 Aug;132(4):302-314. doi: 10.1037/bne0000252. Epub 2018 Jun 28.
Light has substantial influences on the physiology and behavior of most laboratory animals. As such, lighting conditions within animal rooms are potentially significant and often underappreciated variables within experiments. Disruption of the light/dark cycle, primarily by exposing animals to light at night (LAN), disturbs biological rhythms and has widespread physiological consequences because of mechanisms such as melatonin suppression, sympathetic stimulation, and altered circadian clock gene expression. Thus, attention to the lighting environment of laboratory animals and maintaining consistency of a light/dark cycle is imperative for study reproducibility. Light intensity, as well as wavelength, photoperiod, and timing, are all important variables. Although modern rodent facilities are designed to facilitate appropriate light cycling, there are simple ways to modify rooms to prevent extraneous light exposure during the dark period. Attention to lighting conditions of laboratory animals by both researchers and research care staff ensures best practices for maintaining animal welfare, as well as reproducibility of research results. (PsycINFO Database Record
光照对大多数实验动物的生理和行为有重大影响。因此,动物房内的光照条件可能是实验中重要且常被忽视的变量。光/暗周期的破坏,主要是让动物在夜间暴露于光照下(夜间光照),会扰乱生物节律,并由于褪黑素抑制、交感神经刺激和昼夜节律时钟基因表达改变等机制而产生广泛的生理后果。因此,关注实验动物的光照环境并保持光/暗周期的一致性对于研究的可重复性至关重要。光强度以及波长、光周期和时间都是重要变量。尽管现代啮齿动物设施旨在促进适当的光照循环,但仍有一些简单方法可对房间进行改造,以防止在黑暗期出现额外的光照暴露。研究人员和研究护理人员都关注实验动物的光照条件,这确保了维护动物福利以及研究结果可重复性的最佳做法。(PsycINFO数据库记录)