首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Powerful and interpretable behavioural features for quantitative phenotyping of Caenorhabditis elegans
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Powerful and interpretable behavioural features for quantitative phenotyping of Caenorhabditis elegans

机译:Caenorhabditis elegans的定量表型的强大和可解释的行为特征

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摘要

Behaviour is a sensitive and integrative readout of nervous system function and therefore an attractive measure for assessing the effects of mutation or drug treatment on animals. Video data provide a rich but high-dimensional representation of behaviour, and so the first step of analysis is often some form of tracking and feature extraction to reduce dimensionality while maintaining relevant information. Modern machine-learning methods are powerful but notoriously difficult to interpret, while handcrafted features are interpretable but do not always perform as well. Here, we report a new set of handcrafted features to compactly quantify Caenorhabditis elegans behaviour. The features are designed to be interpretable but to capture as much of the phenotypic differences between worms as possible. We show that the full feature set is more powerful than a previously defined feature set in classifying mutant strains. We then use a combination of automated and manual feature selection to define a core set of interpretable features that still provides sufficient power to detect behavioural differences between mutant strains and the wild-type. Finally, we apply the new features to detect time-resolved behavioural differences in a series of optogenetic experiments targeting different neural subsets.
机译:行为是神经系统功能的敏感性和综合性读数,因此是评估突变或药物治疗对动物的影响的吸引力。视频数据提供了一种丰富但高维的行为表示,因此第一步的分析通常是某种形式的跟踪和特征提取,以减少维持相关信息的时间。现代机器学习方法功能强大但难以解释,而手工制作的功能是可解释的,但并不总是表现。在这里,我们报告了一套新的手工制作功能,以简洁地量化caenorhabditis elegans行为。该特征设计是可解释的,但要捕获尽可能多的蠕虫的表型差异。我们表明完整功能集比先前定义的突变体株中的先前定义的功能更强大。然后,我们使用自动化和手动特征选择的组合来定义一组核心可解释功能,仍然提供足够的能力来检测突变菌株和野生型之间的行为差​​异。最后,我们应用新功能来检测靶向不同神经子集的一系列致灭绝实验中的时间解决的行为差异。

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