首页> 美国卫生研究院文献>PLoS Clinical Trials >The effect of exposure to low frequency electromagnetic fields (EMF) as an integral part of the housing system on anxiety-related behaviour, cognition and welfare in two strains of laboratory mouse
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The effect of exposure to low frequency electromagnetic fields (EMF) as an integral part of the housing system on anxiety-related behaviour, cognition and welfare in two strains of laboratory mouse

机译:暴露于低频电磁场(EMF)作为外壳系统不可或缺的一部分对两种小鼠品系的焦虑相关行为,认知和福利的影响

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摘要

Electromagnetic field (EMF) technology has the potential to improve scientific data capture and welfare assessment by allowing automated data collection from individual cages. However, it is important to determine any impact that a new technology itself may have on animal welfare, and previous studies have found contrasting results of EMF on laboratory rodent anxiety-like behaviour and cognition. We therefore investigated whether there was an effect of low frequency EMF experienced continuously over a six-week period, as an integral part of the animal housing system, on measures of mouse anxiety-related behaviour, cognition and welfare. We housed mice (N = 80) of two strains (BALB/cAnNCrl and C57BL/6NCrl) separately in Individually Ventilated Cages (IVCs) in groups of four, either with the EMF plate turned ‘on’ or ‘off’ (n = 5). Some measures, e.g. food and water utilisation, were collected at regular intervals, whereas measures of anxiety-like behaviour (e.g. open field test) and cognitive performance (novel-object recognition test) were collected only at the end of the study. We found expected strong strain differences in most measures, e.g. latency to leave the starting square in an open field test, with C57BL/6NCrl mice moving away sooner, and interactions between strain and time for those measures recorded at more than one time point, e.g. significant weight gain over time for both strains, but with BALB/cAnNCrl mice weighing more. However, we found no significant effects of treatment (EMF ‘on’/‘off’) for any of the measures collected. These results indicate that, for the measures recorded here, there was no measurable impact on the behaviour and welfare of low frequency EMF exposure experienced continuously over a six-week period. Housing systems that include EMF monitoring technology may therefore be suitable for use without influencing either animal welfare or scientific outcomes.
机译:电磁场(EMF)技术通过允许从单个笼子中自动收集数据,具有改善科学数据收集和福利评估的潜力。但是,重要的是确定一项新技术本身可能对动物福利产生的影响,并且先前的研究发现,EMF在实验室啮齿类动物焦虑样行为和认知方面的结果截然相反。因此,我们调查了作为动物饲养系统不可或缺的一部分的六周时间内持续经历的低频EMF对小鼠焦虑相关行为,认知和福利的影响。我们将两个菌株(BALB / cAnNCrl和C57BL / 6NCrl)的小鼠(N = 80)分别放在四个一组的单独通风笼(IVC)中,将EMF板打开或关闭(n = 5 )。一些措施,例如定期收集食物和水的利用情况,而仅在研究结束时收集类似焦虑行为的测量值(例如,露天测试)和认知表现(新物体识别测试)。我们发现,在大多数措施(例如,在C57BL / 6NCrl小鼠更快离开的情况下,在开放野外测试中离开开始方格的潜伏期,并且在多个时间点记录了这些量度的应变和时间之间的相互作用,例如两种品系随时间的体重显着增加,但BALB / cAnNCrl小鼠体重增加。但是,我们发现所收集的任何措施均未对治疗产生明显影响(EMF为“ on” /“ off”)。这些结果表明,对于此处记录的措施,在六周的时间内连续经历的低频EMF暴露的行为和福利没有可衡量的影响。因此,包含EMF监测技术的住房系统可能适合在不影响动物福利或科学成果的情况下使用。

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