筑巢材料和饲养参数对雌性瑞士韦伯斯特小鼠饲料浪费行为的影响

Zosia E Zawacki, James A Sharpe, Travis C Porco, Krista E Lindstrom
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摘要

实验室小鼠的饲料浪费(也称为咀嚼或磨碎行为)是项目管理和动物福利方面的难题。颗粒饲料未经食用就被破坏,会在笼子地板上产生粉末堆积,称为 "orts"。奥特积聚会破坏笼子的微环境,并可能堵塞 Lixits,导致水浸。此外,增加劳动力会增加成本,而笼子的混乱会增加动物的压力。已发表的对这种行为和缓解方法的研究结果并不一致,原因也尚未完全查明。本研究的目的是找出减少实验鼠咀嚼行为的方法。雌性瑞士韦伯斯特(Tac:SW)小鼠(n = 144)被随机分配到 8 组(每组 12 个笼子)中的一组,每组有 2 种饲养密度(单人和双人)和 4 种筑巢材料范例。小鼠先在干净的垫料上饲养 8 周,然后在脏垫料上饲养 8 周。咀嚼行为通过饲料重量、笼子重量和饲料评分进行评估。添加 "钻石捻线器 "可显著提高啮齿动物的啮齿产量,而巢穴转移则会降低啮齿动物的啮齿产量,但降低幅度不大。成对饲养会增加总体咀嚼量,但根据动物数量调整后则不会。这些结果确定了导致咀嚼行为的潜在因素。不过,还需要进一步的研究来阐明确切的原因和解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Nesting Material and Housing Parameters on Feed Wastage Behavior in Female Swiss Webster Mice.

Feed wastage in laboratory mice, also known as chewing or grinding behavior, is problematic for program management and animal welfare. The destruction of pelleted feed without consumption produces a powder accumulation on the cage floor called orts. Ort accumulation disrupts the cage microenvironment and can clog Lixits resulting in flooding. Moreover, added labor adds cost, and cage disruption increases animal stress. Published studies examining the behavior and ways to mitigate it have had inconsistent results, and the cause or causes have not yet been fully identified. The purpose of this study was to identify methods to reduce the development of chewing behavior in laboratory mice. Female Swiss Webster (Tac:SW) mice (n = 144) were randomly assigned to one of 8 groups (12 cages per group) with 2 housing densities (single and pair) and 4 nesting material paradigms. Mice were housed on clean bedding for 8 wk and then soiled bedding for the next 8 wk. Chewing behavior was evaluated by feed weight, cage weight, and feed scores. The addition of a Diamond Twist significantly increased ort production, while nest transfer decreased it but not significantly. Pair housing increased overall orts but not when adjusted for animal number. These results identified potential contributing factors to chewing behavior. However, further research is needed to elucidate the exact causes and solutions.

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