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一种用于自动监测和量化小鼠抓挠行为的重复性运动检测器。

A repetitive movement detector used for automatic monitoring and quantification of scratching in mice.

作者信息

Brash H M, McQueen D S, Christie D, Bell J K, Bond S M, Rees J L

机构信息

Department of Hepatology, University of Edinburgh, Royal Infirmary of Edinburgh, Edinburgh EH16 4SA, UK.

出版信息

J Neurosci Methods. 2005 Mar 15;142(1):107-14. doi: 10.1016/j.jneumeth.2004.08.001.

Abstract

We have designed an economical non-invasive movement detector for small animal studies and used it for monitoring and quantifying itch in mice. The system is based on a sensitive force transducer positioned below a recording platform holding a lightweight polystyrene recording box in which an animal is placed. A programmed micro-controller is used to discriminate between non-specific movement, grooming behaviour, and scratching movements made by the animal's hind limb. Following sub-dermal injection of histamine receptor agonists into the neck of a mouse, dose-related scratching occurred which was detected and quantified. There was 91% correlation between bouts of scratching as counted manually from playback of the video recording and recorded by the detector. The detector was also able rapidly to count the individual scratch movements of the hind limb that comprise a bout, with 95% accuracy in comparison with manual counting during slow motion playback of video tape, something that is impossible for an unaided observer to achieve because individual scratch movements are too fast to discriminate by eye. Separate detectors were used for the efficient non-invasive study of four animals simultaneously, and this number could easily be increased by adding more platforms. The system could also be modified to record the animal's position within the box, which would be of value in studies involving exploratory behaviour. In summary, the non-invasive multichannel repetitive movement detector will be very useful for accurate measurement of scratching during pruritus studies in small animals, with considerable savings in staff time and effort. It should therefore be a valuable tool for helping to investigate pruritus and in the evaluation of anti-pruritic drugs.

摘要

我们设计了一种用于小动物研究的经济实惠的非侵入式运动探测器,并将其用于监测和量化小鼠的瘙痒情况。该系统基于一个灵敏的力传感器,该传感器位于一个记录平台下方,记录平台上放置着一个轻质聚苯乙烯记录盒,动物被放置在该记录盒中。一个编程的微控制器用于区分动物的非特异性运动、梳理行为和后肢的抓挠动作。在小鼠颈部皮下注射组胺受体激动剂后,出现了与剂量相关的抓挠行为,该行为被检测并量化。从视频记录回放中手动计数的抓挠次数与探测器记录的抓挠次数之间的相关性为91%。该探测器还能够快速计数构成一次抓挠发作的后肢的单个抓挠动作,与录像带慢动作回放时的手动计数相比,准确率为95%,而这是 unaided 观察者无法做到的,因为单个抓挠动作太快,肉眼无法区分。使用单独的探测器可同时对四只动物进行高效的非侵入式研究,通过增加更多平台,这个数量可以很容易地增加。该系统还可以进行修改,以记录动物在盒内的位置,这在涉及探索行为的研究中具有重要价值。总之,这种非侵入式多通道重复运动探测器对于在小动物瘙痒研究中准确测量抓挠非常有用,可大量节省工作人员的时间和精力。因此,它应该是有助于研究瘙痒和评估止痒药物的一种有价值的工具。

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