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一个用于研究果蝇行为的新室。

A new chamber for studying the behavior of Drosophila.

机构信息

Division of Biology, California Institute of Technology, Pasadena, California, United States of America.

出版信息

PLoS One. 2010 Jan 27;5(1):e8793. doi: 10.1371/journal.pone.0008793.

Abstract

Methods available for quickly and objectively quantifying the behavioral phenotypes of the fruit fly, Drosophila melanogaster, lag behind in sophistication the tools developed for manipulating their genotypes. We have developed a simple, easy-to-replicate, general-purpose experimental chamber for studying the ground-based behaviors of fruit flies. The major innovative feature of our design is that it restricts flies to a shallow volume of space, forcing all behavioral interactions to take place within a monolayer of individuals. The design lessens the frequency that flies occlude or obscure each other, limits the variability in their appearance, and promotes a greater number of flies to move throughout the center of the chamber, thereby increasing the frequency of their interactions. The new chamber design improves the quality of data collected by digital video and was conceived and designed to complement automated machine vision methodologies for studying behavior. Novel and improved methodologies for better quantifying the complex behavioral phenotypes of Drosophila will facilitate studies related to human disease and fundamental questions of behavioral neuroscience.

摘要

方法可用于快速和客观地量化果蝇的行为表型,但在复杂性方面落后于用于操纵其基因型的工具。我们开发了一种简单、易于复制、通用的实验室,用于研究地面飞行的行为。我们设计的主要创新特点是它将果蝇限制在一个浅的空间体积内,迫使所有的行为相互作用都发生在单层个体中。该设计减少了苍蝇相互遮挡或遮挡的频率,限制了它们外观的可变性,并促进了更多的苍蝇在腔室的中心移动,从而增加了它们相互作用的频率。新的腔室设计提高了数字视频采集的数据质量,其设计理念是补充用于研究行为的自动机器视觉方法。新颖和改进的方法更好地量化果蝇的复杂行为表型,将有助于研究与人类疾病和行为神经科学的基本问题相关的问题。

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