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High-speed recording of neural spikes in awake mice and flies with a fluorescent voltage sensor

机译:用荧光电压传感器高速记录清醒小鼠和苍蝇中的神经尖峰

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摘要

Genetically encoded voltage indicators (GEVIs) are a promising technology for fluorescence readout of millisecond-scale neuronal dynamics. Previous GEVIs had insufficient signaling speed and dynamic range to resolve action potentials in live animals. We coupled fast voltage-sensing domains from a rhodopsin protein to bright fluorophores through resonance energy transfer. The resulting GEVIs are sufficiently bright and fast to report neuronal action potentials and membrane voltage dynamics in awake mice and flies, resolving fast spike trains with 0.2-millisecond timing precision at spike detection error rates orders of magnitude better than previous GEVIs. In vivo imaging revealed sensory-evoked responses, including somatic spiking, dendritic dynamics, and intracellular voltage propagation. These results empower in vivo optical studies of neuronal electrophysiology and coding and motivate further advancements in high-speed microscopy.
机译:遗传编码的电压指示器(GEVI)是一种用于荧光读取毫秒级神经元动力学的有前途的技术。以前的GEVI信号传递速度和动态范围不足以解决活体动物的动作电位。我们通过共振能量转移将视紫红质蛋白的快速电压感测域与亮荧光团偶联。产生的GEVI足够明亮且快速,可以报告清醒的小鼠和果蝇中的神经元动作电位和膜电压动态,从而以0.2毫秒的定时精度解决了快速的尖峰序列,其尖峰检测错误率比以前的GEVI好几个数量级。体内成像显示了诱发感觉的反应,包括体细胞增生,树突动力学和细胞内电压传播。这些结果使神经元电生理学和编码的体内光学研究成为可能,并推动了高速显微镜的进一步发展。

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