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一种新型旷场活动探测器,用于确定实验动物在受伤和患病后的空间和时间运动情况。

A novel open field activity detector to determine spatial and temporal movement of laboratory animals after injury and disease.

作者信息

Koob Andrew O, Cirillo John, Babbs Charles F

机构信息

Department of Pediatric Neurosurgery, Dartmouth Hitchcock Medical Center, Dartmouth College, Lebanon, NH 03756, USA.

出版信息

J Neurosci Methods. 2006 Oct 30;157(2):330-6. doi: 10.1016/j.jneumeth.2006.04.020. Epub 2006 Jun 2.

Abstract

The wide range of tests for laboratory animal behavior after neurological injury or disease each have their benefits and detriments. The varied behavior an animal exhibits makes it difficult to decide which test to use. However, a fundamental instinct for the laboratory animal is to explore when placed in a new environment. A way to test exploratory behavior is in the open field. Here, we introduce a simple activity box without the use of video equipment to determine the exploratory movement of a rat after traumatic brain injury. The activity box is an open field and the rat explores its surroundings when placed inside. Four infrared beams were placed in both the X and Y-axis inside the box. Using a novel system to determine which beam the rat breaks, we describe where the rat is in space and time while in the activity box. Other models can show the number of beams broken, but here we elucidate the methods to additionally determine the amount of area explored, the total distance traveled by the rat and percent time exploring.

摘要

针对神经损伤或疾病后的实验动物行为,有各种各样的测试方法,每种方法都有其优缺点。动物表现出的行为各不相同,这使得很难决定使用哪种测试方法。然而,实验动物的一个基本本能是在被置于新环境时进行探索。一种测试探索行为的方法是在旷场中进行。在此,我们介绍一个不使用视频设备的简单活动箱,以确定创伤性脑损伤后大鼠的探索运动。该活动箱是一个旷场,大鼠被置于其中时会探索周围环境。在箱内的X轴和Y轴上都放置了四根红外光束。使用一种新颖的系统来确定大鼠打破了哪根光束,我们描述了大鼠在活动箱内的空间位置和时间。其他模型可以显示打破的光束数量,但在这里我们阐明了额外确定探索面积、大鼠行进的总距离和探索时间百分比的方法。

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