Stone Bryan, Burke Brian, Pathakamuri Joseph, Coleman John, Kuebler Daniel
Department of Biology, Franciscan University of Steubenville.
Department of Computer Science, Franciscan University of Steubenville.
J Vis Exp. 2014 Feb 19(84):e51460. doi: 10.3791/51460.
Video tracking systems have been used widely to analyze Drosophila melanogaster movement and detect various abnormalities in locomotive behavior. While these systems can provide a wealth of behavioral information, the cost and complexity of these systems can be prohibitive for many labs. We have developed a low-cost assay for measuring locomotive behavior and seizure movement in D. melanogaster. The system uses a web-cam to capture images that can be processed using a combination of inexpensive and free software to track the distance moved, the average velocity of movement and the duration of movement during a specified time-span. To demonstrate the utility of this system, we examined a group of D. melanogaster mutants, the Bang-sensitive (BS) paralytics, which are 3-10 times more susceptible to seizure-like activity (SLA) than wild type flies. Using this novel system, we were able to detect that the BS mutant bang senseless (bss) exhibits lower levels of exploratory locomotion in a novel environment than wild type flies. In addition, the system was used to identify that the drug metformin, which is commonly used to treat type II diabetes, reduces the intensity of SLA in the BS mutants.
视频跟踪系统已被广泛用于分析黑腹果蝇的运动,并检测其 locomotive 行为中的各种异常。虽然这些系统可以提供丰富的行为信息,但对于许多实验室来说,这些系统的成本和复杂性可能过高。我们开发了一种低成本的检测方法,用于测量黑腹果蝇的 locomotive 行为和癫痫发作运动。该系统使用网络摄像头捕捉图像,这些图像可以使用廉价且免费的软件组合进行处理,以跟踪在指定时间跨度内移动的距离、移动的平均速度和移动持续时间。为了证明该系统的实用性,我们检查了一组黑腹果蝇突变体,即对 Bang 敏感(BS)的麻痹突变体,它们比野生型果蝇对癫痫样活动(SLA)的易感性高 3 至 10 倍。使用这个新颖的系统,我们能够检测到 BS 突变体 bang senseless(bss)在新环境中的探索性 locomotion 水平低于野生型果蝇。此外,该系统还用于确定通常用于治疗 II 型糖尿病的药物二甲双胍可降低 BS 突变体中 SLA 的强度。