Mice respond to a cage change (CC) with altered activity, disrupted sleep and increased anxiety. A bi-weekly cage change is, therefore, preferred over a shorter CC interval and is currently the prevailing routine for Individually ventilated cages (IVCs). However, the build-up of ammonia (NH3) during this period is a potential threat to the animal health and the literature holds conflicting reports leaving this issue unresolved. We have therefor examined longitudinally in-cage activity, animal health and the build-up of ammonia across the cage floor with female and male C57BL/6 mice housed four per IVC changed every other week. We used a multicentre design with a standardised husbandry enabling us to tease-out features that replicated across...
The current edition of the Guide for the Care and Use of Laboratory Animals makes recommendations on...
In the plenum chamber microenvironmental ventilation system (MEV) for laboratory animal housing, air...
The objective was to exploit the raw data output from a scalable home cage (type IIL IVC) monitoring...
Mice respond to a cage change (CC) with altered activity, disrupted sleep and increased anxiety. A b...
The frequency at which mouse cages are changed has important implications for the animals, animal ca...
<p>Shown are the mean ammonia levels inside cages as a function of time. Cages housing female (n = 5...
Our purpose in this investigation was to determine if we could reduce cage changing frequency withou...
Abstract Background and aims Automated recording of laboratory animal’s home cage behavior is rece...
The number of air changes per hour (ACH), an important index for individually ventilated cages (IVC)...
AbstractThe environment in which a laboratory animal is housed can significantly influence its behav...
Recent developments in the technology to breed and house laboratory rodents for medical research has...
BACKGROUND AND AIMS:Automated recording of laboratory animal's home cage behavior is receiving incre...
Background and aimsAutomated recording of laboratory animal’s home cage behavior is receiving increa...
A, C, E and G Heat maps of single cages across multiple weeks (ordinate, each line represents a cage...
Housing conditions are known to influence laboratory animal behavior. However, it is not known wheth...
The current edition of the Guide for the Care and Use of Laboratory Animals makes recommendations on...
In the plenum chamber microenvironmental ventilation system (MEV) for laboratory animal housing, air...
The objective was to exploit the raw data output from a scalable home cage (type IIL IVC) monitoring...
Mice respond to a cage change (CC) with altered activity, disrupted sleep and increased anxiety. A b...
The frequency at which mouse cages are changed has important implications for the animals, animal ca...
<p>Shown are the mean ammonia levels inside cages as a function of time. Cages housing female (n = 5...
Our purpose in this investigation was to determine if we could reduce cage changing frequency withou...
Abstract Background and aims Automated recording of laboratory animal’s home cage behavior is rece...
The number of air changes per hour (ACH), an important index for individually ventilated cages (IVC)...
AbstractThe environment in which a laboratory animal is housed can significantly influence its behav...
Recent developments in the technology to breed and house laboratory rodents for medical research has...
BACKGROUND AND AIMS:Automated recording of laboratory animal's home cage behavior is receiving incre...
Background and aimsAutomated recording of laboratory animal’s home cage behavior is receiving increa...
A, C, E and G Heat maps of single cages across multiple weeks (ordinate, each line represents a cage...
Housing conditions are known to influence laboratory animal behavior. However, it is not known wheth...
The current edition of the Guide for the Care and Use of Laboratory Animals makes recommendations on...
In the plenum chamber microenvironmental ventilation system (MEV) for laboratory animal housing, air...
The objective was to exploit the raw data output from a scalable home cage (type IIL IVC) monitoring...