Evaluation of Ambient Sound, Vibration, and Light in Rodent Housing Rooms.

IF 1.2 3区 农林科学 Q3 VETERINARY SCIENCES Journal of the American Association for Laboratory Animal Science Pub Date : 2022-11-01 DOI:10.30802/AALAS-JAALAS-22-000040
Amanda J Barabas, Amanda K Darbyshire, Sylvia L Schlegel, Brianna N Gaskill
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Abstract

Excessive sound, vibration, and light are detrimental to rodent welfare, yet these parameters are rarely recorded in vivaria. Whether housing environments exceed the suggested thresholds and which specific factors may alter these parameters is generally unknown. The goal of this study was to determine how environmental factors may alter sound, vibration, and light at the room and cage levels. Measurements were made using an ultrasonic microphone, accelerometer, and light sensor. Measurement sites were 1) in open air at a central location in 64 rooms located in 9 buildings, and 2) inside an empty mouse or rat cage containing chow, water, and bedding and located on an animal transfer station (n = 51) or housing rack (n = 102). Information collected for each transfer station and rack measurement included the year of manufacture, the species on the rack, and the number of cages on the rack. For each location, a baseline measurement was taken with the transfer station turned off, followed by another measurement after the transfer station was turned on. In general, many factors influenced ambient sound, vibration, and light, indicating that values are not uniform across rodent rooms in the same institution or across cages in a single room. Sound peaks capable of startling rodents were measured in association with hallway ultrasonic motion sensors and during cage change. Vibration and light intensity were generally low when cages were located on the rack. In contrast, active transfer stations had more vibration and light intensity, reaching levels that were potentially stressful for rodents. These data reflect the ambient sound, vibration, and light that rodents experience during normal facility operations. These patterns may extend to other locations, but given the variability in all parameters, the data highlight the need for institutions to conduct their own monitoring.

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啮齿动物房间环境声、振动和光的评价。
过度的声音、振动和光线对啮齿动物的健康有害,但这些参数很少在动物体内被记录下来。住房环境是否超过建议的阈值以及哪些具体因素可能改变这些参数通常是未知的。本研究的目的是确定环境因素如何改变房间和笼子水平上的声音、振动和光线。测量使用超声波传声器,加速度计和光传感器。测量地点为:1)位于9栋建筑物64个房间的露天中心位置,2)位于动物转运站(n = 51)或房架(n = 102)的空小鼠或大鼠笼子内,笼子内装有食物、水和床上用品。为每个转运站和机架测量收集的信息包括生产年份、机架上的物种和机架上的笼子数量。对于每个位置,在中转站关闭时进行基线测量,然后在中转站打开后进行另一次测量。一般来说,许多因素影响环境声音、振动和光线,这表明在同一机构的啮齿动物房间或单个房间的不同笼子中,这些数值并不均匀。在走廊超声波运动传感器和换笼过程中测量了能够惊吓啮齿动物的声音峰值。当笼子放置在架子上时,振动和光强普遍较低。相比之下,活跃的中转站有更多的振动和光强度,达到了对啮齿动物潜在压力的水平。这些数据反映了啮齿动物在正常设施操作过程中所经历的环境声音、振动和光。这些模式可能扩展到其他地点,但鉴于所有参数的可变性,数据突出表明各机构需要进行自己的监测。
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来源期刊
CiteScore
3.10
自引率
35.30%
发文量
122
审稿时长
6-12 weeks
期刊介绍: The Journal of the American Association for Laboratory Animal Science (JAALAS) serves as an official communication vehicle for the American Association for Laboratory Animal Science (AALAS). The journal includes a section of refereed articles and a section of AALAS association news. All signed articles, including refereed articles and book reviews, editorials, committee reports, and news and commentary, reflect the individual views of the authors and are not official views of AALAS. The mission of the refereed section of the journal is to disseminate high-quality, peer-reviewed information on animal biology, technology, facility operations, management, and compliance as relevant to the AALAS membership. JAALAS accepts research reports (data-based) or scholarly reports (literature-based), with the caveat that all articles, including solicited manuscripts, must include appropriate references and must undergo peer review.
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