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A low-cost mouse cage warming system provides improved intra-ischemic and post-ischemic body temperature control - Application for reducing variability in experimental stroke studies

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Author(s)
Sung-HaHongJeong-Ho HongMatthew T. LaheyLiang ZhuJessica M. StephensonSean P. Marrelli
Keimyung Author(s)
Hong, Jeong Ho
Department
Dept. of Neurology (신경과학)
Journal Title
J Neurosci Methods
Issued Date
2021
Volume
360
Keyword
Brain and body temperature in stroke outcomeImproved rigor in experimental strokeMouse temperature regulation in strokePost-stroke temperature managementTemperature support cage
Abstract
Background:
Brain temperature is a strong determinant of ischemic stroke injury. For this reason, tight management of brain or body temperature (Tcore) in experimental rodent stroke models is recommended to improve the rigor and reproducibility of outcomes. However, methods for managing Tcore during and after stroke vary widely in approach and effectiveness.

New Method:
We developed a low-cost warm ambient air cage (WAAC) system to provide improved temperature control during the intra-ischemic and post-ischemic recovery periods. The system is incorporated into standard holding cages for maintaining Tcore during the intra-ischemic period as well as for several hours into the recovery period.

Results and Comparison with Existing Methods:
We compared the WAAC system with a commonly used heat support method, consisting of a cage on a heating pad. Both heat support systems were evaluated for the middle cerebral artery occlusion (MCAo) stroke model in mice. The WAAC system provided improved temperature control (more normothermic Tcore and less Tcore variation) during the intra- ischemic period (60 min) and post-ischemic period (3 h). Mean infarct volume was not statistically different by heat support system, however, standard deviation was 54 % lower in the WAAC system group.

Conclusions:
Mice and other small rodents are highly vulnerable to heat loss during and after the MCAo procedure. The WAAC system provides more precise and controlled Tcore maintenance compared with frequently used induction heating methods in mice undergoing the MCAo stroke model. The improved temperature control should enhance experimental rigor and reduce the number of experimental animals needed.
Keimyung Author(s)(Kor)
홍정호
Publisher
School of Medicine (의과대학)
Citation
Sung-HaHong et al. (2021). A low-cost mouse cage warming system provides improved intra-ischemic and post-ischemic body temperature control - Application for reducing variability in experimental stroke studies. J Neurosci Methods, 360, 109228. doi: 10.1016/j.jneumeth.2021.109228
Type
Article
ISSN
0165-0270
Source
https://www.sciencedirect.com/science/article/abs/pii/S0165027021001631
DOI
10.1016/j.jneumeth.2021.109228
URI
https://kumel.medlib.dsmc.or.kr/handle/2015.oak/43817
Appears in Collections:
1. School of Medicine (의과대학) > Dept. of Neurology (신경과학)
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