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首页> 外文期刊>Nature Communications >Long-term optical brain imaging in live adult fruit flies
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Long-term optical brain imaging in live adult fruit flies

机译:成年果蝇的长期光学脑成像

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Time-lapse in vivo microscopy studies of cellular morphology and physiology are crucial toward understanding brain function but have been infeasible in the fruit fly, a key model species. Here we use laser microsurgery to create a chronic fly preparation for repeated imaging of neural architecture and dynamics for up to 50 days. In fly mushroom body neurons, we track axonal boutons for 10 days and record odor-evoked calcium transients over 7 weeks. Further, by using voltage imaging to resolve individual action potentials, we monitor spiking plasticity in dopamine neurons of flies undergoing mechanical stress. After 24?h of stress, PPL1-α’3 but not PPL1-α’2α2 dopamine neurons have elevated spike rates. Overall, our chronic preparation is compatible with a broad range of optical techniques and enables longitudinal studies of many biological questions that could not be addressed before in live flies.
机译:细胞形态和生理学的延时体内显微镜研究对于理解脑功能至关重要,但在果蝇这一关键模型物种中却不可行。在这里,我们使用激光显微外科手术来创建长期飞行准备,以对神经结构和动力学进行重复成像,长达50天。在飞蘑菇体内的神经元中,我们追踪轴突弹跳10天,并记录7周内气味诱发的钙瞬变。此外,通过使用电压成像来解决个体动作电位,我们可以监测遭受机械应力的果蝇的多巴胺神经元的突增可塑性。压力24小时后,PPL1-α’3多巴胺神经元而不是PPL1-α’2α2多巴胺神经元的刺突率升高。总体而言,我们的长期准备工作与广泛的光学技术兼容,并且可以对许多以前无法通过实蝇解决的生物学问题进行纵向研究。

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