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Validation of optical voltage reporting by the genetically encoded voltage indicator VSFP-Butterfly from cortical layer 2/3 pyramidal neurons in mouse brain slices

机译:遗传编码的电压指示器VSFP-蝴蝶从小鼠大脑切片的皮质2/3锥体神经元发出的光电压报告的验证

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摘要

Understanding how behavior emerges from brain electrical activity is one of the ultimate goals of neuroscience. To achieve this goal we require methods for large-scale recording of the electrical activity of specific neuronal circuits. A very promising approach is to use optical reporting of membrane voltage transients, particularly if the voltage reporter is genetically targeted to specific neuronal populations. Targeting in this way allows population signals to be recorded and interpreted without blindness to neuronal diversity. Here, we evaluated the voltage-sensitive fluorescent protein, VSFP Butterfly 2.1, a genetically encoded voltage indicator (GEVI), for monitoring electrical activity of layer 2/3 cortical pyramidal neurons in mouse brain slices. Standard widefield fluorescence and two-photon imaging revealed robust, high signal-to-noise ratio read-outs of membrane voltage transients that are predominantly synaptic in nature and can be resolved as discrete areas of synaptically connected layer 2/3 neurons. We find that targeted expression of this GEVI in the cortex provides a flexible and promising tool for the analysis of L2/3 cortical network function.
机译:了解行为是如何从脑电活动中产生的,是神经科学的最终目标之一。为了实现此目标,我们需要用于大规模记录特定神经元电路电活动的方法。一种非常有前途的方法是使用膜电压瞬变的光学报告,特别是如果电压报告基因在遗传上针对特定的神经元群体时。以这种方式瞄准可以记录和解释种群信号,而不会盲目神经元多样性。在这里,我们评估了对电压敏感的荧光蛋白VSFP Butterfly 2.1,这是一种遗传编码的电压指示器(GEVI),用于监视小鼠脑切片中第2/3层皮质锥体神经元的电活动。标准的宽视场荧光和双光子成像显示出膜电压瞬变的鲁棒,高信噪比读数,其本质上主要是突触,可以解析为突触连接的第2/3层神经元的离散区域。我们发现该GEVI在皮质中的靶向表达为分析L2 / 3皮质网络功能提供了灵活而有前途的工具。

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