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Impedance Measures and a Mounting Technique for Drosophila: Larval Movements Heart Rate Imaging and Electrophysiology

机译:果蝇的阻抗措施和安装技术:幼虫运动心率影像学和电生理学

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摘要

Monitoring movements of larval with electrical detection allows one to record the behaviors without the use of lights and cameras. This is a suitable technique when studying the use of light-sensitive proteins in optogenetic studies. Electrical measures are feasible to use in determining when a larva starts to move or continues to move after a light induced activation of channelrhodopsin. We have developed a technique using an electrical measure of the media as an index of larval movement. As a proof of concept, recordings with an infrared camera of the larval movement were simultaneous made with electrical measures. The two techniques parallel each other in their ability to index larval movements. Bright light-emitting diode (LED) lights used in optogenetic experiments tend to saturate the detectors of the camera unless filters are used and different filters maybe necessary depending on the LED spectrum and sensitivity of the camera. Impedance measures are independent of the type of LED or brightness. We also assessed the use of a non-solvent based glue (3M Vetbond) to hold larvae in place while measuring synaptic function of neuromuscular junctions, cardiac function and influence of modulators, or activation of light-sensitive channels.
机译:通过电子检测监控幼虫的活动,无需使用灯和摄像机即可记录幼虫的行为。在研究光遗传学研究中光敏感蛋白的使用时,这是一种合适的技术。在确定光诱导的视紫红质激活后,幼虫何时开始移动或继续移动时,可以使用电气措施。我们已经开发出一种技术,该技术使用介质的电测量作为幼虫运动的指标。作为概念证明,用电子手段同时进行了幼虫运动的红外摄像机记录。两种技术在索引幼虫运动的能力上彼此平行。除非使用滤光片,否则在光遗传学实验中使用的明亮发光二极管(LED)灯会使相机的检测器饱和,具体取决于相机的LED光谱和灵敏度。阻抗措施与LED的类型或亮度无关。我们还评估了使用非溶剂胶(3M Vetbond)将幼虫固定在适当位置,同时测量神经肌肉接头的突触功能,心脏功能和调节剂的影响或光敏通道的激活。

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