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Automated analysis of long-term grooming behavior in Drosophila using a k-nearest neighbors classifier

机译:使用k最近邻居分类器自动分析果蝇中的长期修饰行为

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摘要

Despite being pervasive, the control of programmed grooming is poorly understood. We addressed this gap by developing a high-throughput platform that allows long-term detection of grooming in Drosophila melanogaster. In our method, a k-nearest neighbors algorithm automatically classifies fly behavior and finds grooming events with over 90% accuracy in diverse genotypes. Our data show that flies spend ~13% of their waking time grooming, driven largely by two major internal programs. One of these programs regulates the timing of grooming and involves the core circadian clock components cycle, clock, and period. The second program regulates the duration of grooming and, while dependent on cycle and clock, appears to be independent of period. This emerging dual control model in which one program controls timing and another controls duration, resembles the two-process regulatory model of sleep. Together, our quantitative approach presents the opportunity for further dissection of mechanisms controlling long-term grooming in Drosophila.
机译:尽管很普遍,但是对编程修饰的控制却知之甚少。我们通过开发一个高通量平台来解决这一差距,该平台可以长期检测果蝇中的修饰。在我们的方法中,k近邻算法自动对飞行行为进行分类,并在各种基因型中以超过90%的准确度查找修饰事件。我们的数据显示,苍蝇在清醒时间中的花费约为13%,主要是受两个主要内部计划的推动。这些程序之一调节整理的时间,并涉及核心生物钟时钟组件的周期,时钟和周期。第二个程序调节修饰的持续时间,尽管它取决于周期和时钟,但似乎与周期无关。这种新兴的双重控制模型(其中一个程序控制时间,另一个程序控制持续时间)类似于睡眠的两过程调节模型。总之,我们的定量方法为进一步分离控制果蝇中长期修饰的机制提供了机会。

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