Riemer Stefanie, Assis Luciana, Pike Thomas W, Mills Daniel S
Animal Behaviour, Cognition and Welfare Research Group, School of Life Sciences, University of Lincoln, Joseph Banks Laboratories, Green Lane, Lincoln LN6 7DL, United Kingdom.
Animal Behaviour, Cognition and Welfare Research Group, School of Life Sciences, University of Lincoln, Joseph Banks Laboratories, Green Lane, Lincoln LN6 7DL, United Kingdom.
Physiol Behav. 2016 Dec 1;167:86-91. doi: 10.1016/j.physbeh.2016.09.002. Epub 2016 Sep 5.
Infrared thermography can visualize changes in body surface temperature that result from stress-induced physiological changes and alterations of blood flow patterns. Here we explored its use for remote stress monitoring (i.e. removing need for human presence) in a sample of six pet dogs. Dogs were tested in a brief separation test involving contact with their owner, a stranger, and social isolation for two one-minute-periods. Tests were filmed using a thermographic camera set up in a corner of the room, around 7m from where the subjects spent most of the time. Temperature was measured from selected regions of both ear pinnae simultaneously. Temperatures of both ear pinnae showed a pattern of decrease during separation and increase when a person (either the owner or a stranger) was present, with no lateralized temperature differences between the two ears. Long distance thermographic measurement is a promising technique for non-invasive remote stress assessment, although there are some limitations related to dogs' hair structure over the ears, making it unsuitable for some subjects.
红外热成像技术可以可视化由压力诱导的生理变化和血流模式改变所导致的体表温度变化。在此,我们对六只宠物狗进行了样本测试,探索了红外热成像技术在远程压力监测(即无需人员在场)方面的应用。在一个简短的分离测试中对狗进行测试,该测试包括与它们的主人、一个陌生人接触,以及在两个一分钟时间段内进行社会隔离。测试使用安装在房间角落的热成像相机进行拍摄,相机距离受试者大部分时间所在位置约7米。同时从双耳廓的选定区域测量温度。在分离期间,双耳廓的温度均呈现下降模式,而当有一个人(主人或陌生人)在场时温度会升高,两只耳朵之间没有温度差异的偏向性。远距离热成像测量是一种用于非侵入性远程压力评估的有前景的技术,尽管与狗耳朵上的毛发结构存在一些相关限制,这使得该技术不适用于某些个体。