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一种用于自动测量秀丽隐杆线虫咽部抽吸的可扩展方法。

A scalable method for automatically measuring pharyngeal pumping in C. elegans.

作者信息

Scholz Monika, Lynch Dylan J, Lee Kyung Suk, Levine Erel, Biron David

机构信息

James Franck Institute, The University of Chicago, Chicago, IL 60637, USA; Institute for Biophysical Dynamics, The University of Chicago, Chicago, IL 60637, USA.

Department of Chemical Engineering, University of Illinois at Chicago, Chicago, IL 60607, USA.

出版信息

J Neurosci Methods. 2016 Dec 1;274:172-178. doi: 10.1016/j.jneumeth.2016.07.016. Epub 2016 Jul 26.

Abstract

BACKGROUND

The nematode Caenorhabditis elegans is widely used for studying small neural circuits underlying behavior. In particular, the rhythmic feeding motions collectively termed pharyngeal pumping are regulated by a nearly autonomous network of 20 neurons of 14 types. Despite much progress achieved through laser ablation, genetics, electrophysiology, and optogenetics, key questions regarding the regulation of pumping remain open.

NEW METHOD

We describe the implementation and application of a scalable automated method for measuring pumping in controlled environments. Our implementation is affordable and flexible: key hardware and software elements can be modified to accommodate different requirements.

RESULTS

We demonstrate prolonged measurements under controlled conditions and the resulting high quality data. We show the scalability of our method, enabling high throughput, and its suitability for maintaining static and dynamic conditions. When food availability was oscillated, pumping rates were low as compared to steady conditions and pumping activity was not reliably modulated in response to changes in food concentration.

COMPARISON WITH EXISTING METHOD

The prevailing method for measuring rates of pumping relies on scoring by visual inspection of short recordings. Our automated method compares well with manual scoring. It enables detailed statistical characterization under experimental conditions not previously accessible and minimizes unintentional bias.

CONCLUSIONS

Our approach adds a powerful tool for studying pharyngeal pumping. It enhances the experimental versatility of assaying genetic and pharmacological manipulations and the ability to characterize the resulting behavior. Both the experimental setup and the analysis can be readily adapted to additional challenging motion detection problems.

摘要

背景

线虫秀丽隐杆线虫被广泛用于研究行为背后的小型神经回路。特别是,统称为咽泵吸的有节奏进食运动由14种类型的20个神经元组成的几乎自主的网络调节。尽管通过激光消融、遗传学、电生理学和光遗传学取得了很大进展,但关于泵吸调节的关键问题仍然悬而未决。

新方法

我们描述了一种用于在受控环境中测量泵吸的可扩展自动化方法的实现和应用。我们的实现成本低且灵活:关键硬件和软件元素可以修改以适应不同要求。

结果

我们展示了在受控条件下的长时间测量以及由此产生的高质量数据。我们展示了我们方法的可扩展性,实现了高通量,以及它对维持静态和动态条件的适用性。当食物供应振荡时,与稳定条件相比,泵吸速率较低,并且泵吸活动并未根据食物浓度的变化得到可靠调节。

与现有方法的比较

测量泵吸速率的主流方法依赖于通过对短记录的目视检查进行评分。我们的自动化方法与人工评分相比效果良好。它能够在以前无法达到的实验条件下进行详细的统计表征,并最大限度地减少无意偏差。

结论

我们的方法为研究咽泵吸增加了一个强大的工具。它增强了分析基因和药物操作的实验通用性以及表征由此产生的行为的能力。实验设置和分析都可以很容易地适应其他具有挑战性的运动检测问题。

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