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本文引用的文献

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2
Ammonia Levels and Urine-Spot Characteristics as Cage-Change Indicators for High-Density Individually Ventilated Mouse Cages.氨水平和尿斑特征作为高密度独立通风小鼠笼具更换笼盒的指标
J Am Assoc Lab Anim Sci. 2016;55(3):260-7.
3
Effect of 2 Bedding Materials on Ammonia Levels in Individually Ventilated Cages.两种垫料对独立通风笼中氨气水平的影响。
J Am Assoc Lab Anim Sci. 2016 Jan;55(1):25-8.
4
Intracage ammonia levels in static and individually ventilated cages housing C57BL/6 mice on 4 bedding substrates.在4种垫料基质上饲养C57BL/6小鼠的静态和独立通风笼中的笼内氨水平。
J Am Assoc Lab Anim Sci. 2014 Mar;53(2):146-51.
5
Effects of cage density, sanitation frequency, and bedding type on animal wellbeing and health and cage environment in mice and rats.饲养笼密度、清洁频率和垫料类型对小鼠和大鼠的动物福利、健康及饲养笼环境的影响。
J Am Assoc Lab Anim Sci. 2012 Nov;51(6):781-8.
6
Effects of a 28-day cage-change interval on intracage ammonia levels, nasal histology, and perceived welfare of CD1 mice.28天换笼间隔对CD1小鼠笼内氨水平、鼻腔组织学及感知福利的影响。
J Am Assoc Lab Anim Sci. 2011 Nov;50(6):868-78.
7
Effects of the physical form of the diet on food intake, growth, and body composition changes in mice.饮食的物理形态对小鼠食物摄入量、生长及身体成分变化的影响。
J Am Assoc Lab Anim Sci. 2011 Jul;50(4):488-94.
8
Disparities in ammonia, temperature, humidity, and airborne particulate matter between the micro-and macroenvironments of mice in individually ventilated caging.独立通风笼盒中小鼠微环境和宏观环境之间氨、温度、湿度及空气中颗粒物的差异
J Am Assoc Lab Anim Sci. 2010 Mar;49(2):177-83.
9
Effects of cage-change frequency and bedding volume on mice and their microenvironment.更换饲养笼频率和垫料量对小鼠及其微环境的影响。
J Am Assoc Lab Anim Sci. 2009 Nov;48(6):763-73.
10
Ammonia and carbon dioxide concentrations in disposable and reusable ventilated mouse cages.一次性和可重复使用的通风小鼠笼中的氨和二氧化碳浓度。
J Am Assoc Lab Anim Sci. 2008 Mar;47(2):57-62.

与颗粒饲料相比,挤压饲料对饲养在独立通风笼中的实验小鼠及笼内环境的影响。

Effects of Extruded Compared with Pelleted Diets on Laboratory Mice Housed in Individually Ventilated Cages and the Cage Environment.

作者信息

Levy Daveeta Rm, Flores Rene, Garcia Gloria E, Craig Suzanne L, Jensen V Behrana

出版信息

J Am Assoc Lab Anim Sci. 2018 Nov 1;57(6):686-94. doi: 10.30802/AALAS-JAALAS-17-000110. Epub 2018 Sep 5.

DOI:10.30802/AALAS-JAALAS-17-000110
PMID:30185286
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6241380/
Abstract

The physical form of the diet fed to laboratory animals should be evaluated to reduce experimental variations and confoundingfactors. This 14-d study evaluated the effects of diet form (pelleted or extruded) on intracage ammonia concentrations,feed disappearance, body weight, cage weight, and the degree of cage soilage and whether these effects were influenced bystrain or stock or sex. Mice (C57BL/6, ICR, and nude; age, 4 wk) were randomly assigned to 4 treatment groups representingpelleted and extruded diets from each of 2 vendors (pelleted diet groups, P1 and P2; extruded diet groups, E1 and E2).Intracage ammonia concentrations depended on strain or stock, diet, and day and were higher in cages housing nude micethat consumed P1. Diet type did not affect the weight of mice at the end of the study. Feed disappearance was dependent ondiet type and mouse strain or stock and was greatest in the cages of mice that consumed P1. In addition, the greatest feeddisappearance was seen with ICR mice, whereas the least was seen with C57BL/6 mice. Cages housing male nude mice hadgreater cage soilage than those housing female nude mice. The degree of cage soilage was influenced by diet type and dayalso. These results show that diet form and mouse strain or stock significantly affect intracage ammonia concentrations, feeddisappearance, cage weight, and the degree of cage soilage.

摘要

应评估提供给实验动物的饲料的物理形态,以减少实验差异和混杂因素。这项为期14天的研究评估了饲料形态(颗粒状或挤压状)对笼内氨浓度、饲料消耗量、体重、笼子重量以及笼子污染程度的影响,以及这些影响是否受品系或种群或性别的影响。小鼠(C57BL/6、ICR和裸鼠;年龄4周)被随机分配到4个处理组,分别代表来自2个供应商的颗粒状和挤压状饲料(颗粒状饲料组,P1和P2;挤压状饲料组,E1和E2)。笼内氨浓度取决于品系或种群、饲料和天数,在饲养食用P1饲料的裸鼠的笼子中更高。在研究结束时,饲料类型对小鼠体重没有影响。饲料消耗量取决于饲料类型和小鼠品系或种群,在食用P1饲料的小鼠笼中最大。此外,ICR小鼠的饲料消耗量最大,而C57BL/6小鼠的饲料消耗量最小。饲养雄性裸鼠的笼子比饲养雌性裸鼠的笼子污染更严重。笼子污染程度也受饲料类型和天数的影响。这些结果表明,饲料形态和小鼠品系或种群显著影响笼内氨浓度、饲料消耗量、笼子重量和笼子污染程度。