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An airtight approach to the inebriometer: from construction to application with volatile anesthetics.

机译:充气计的密封方法:从构造到使用挥发性麻醉剂的应用。

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The mechanism by which inhaled anesthetics work is not fully understood, although they have been extensively used. Much research has been done showing the likelihood that there is more than one pathway or mechanism of action. A long-term goal of our laboratory is to decipher these mechanisms using Drosophila melanogaster, an excellent model organism for this purpose. In order to do this, we have modified and constructed an apparatus called the inebriometer to quantitatively analyze the response of flies to inhaled anesthetics. While the inebriometer is not new to the fly community, our updated design provides a relatively low-labor, high-throughput means for performing screens in search of genes involved in the anesthetic mechanism. Here we describe our construction of an airtight inebriometer that we have designed for this purpose. We also provide data that validates this apparatus and establishes a procedure for its use.Registry Number/Name of Substance 0 (Anesthetics, Inhalation). CYS9AKD70P (Isoflurane).
机译:尽管吸入麻醉药已被广泛使用,但其机理尚不完全清楚。已经进行了许多研究,表明存在多种途径或作用机理的可能性。我们实验室的长期目标是使用果蝇果蝇(Drosophila melanogaster)破译这些机制,果蝇是一种出色的模型生物。为了做到这一点,我们已经修改并构造了一种称为吸虫率计的设备,以定量分析果蝇对吸入麻醉药的反应。尽管风速计对苍蝇社区并不陌生,但我们的更新设计提供了一种相对低劳动,高通量的方法,可以进行筛选以寻找涉及麻醉机制的基因。在这里,我们描述了为此目的设计的气密式Inebriometer的构造。我们还提供验证该仪器并建立使用程序的数据。注册号/物质0的名称(麻醉剂,吸入剂)。 CYS9AKD70P(异氟烷)。

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