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Bright and photostable chemigenetic indicators for extended in vivo voltage imaging

机译:明亮而光稳定的化学成因指示剂,可用于体内电压成像

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Genetically encoded voltage indicators (GEVIs) enable monitoring of neuronal activity at high spatial and temporal resolution. However, the utility of existing GEVIs has been limited by the brightness and photostability of fluorescent proteins and rhodopsins. We engineered a GEVI, called Voltron, that uses bright and photostable synthetic dyes instead of protein-based fluorophores, thereby extending the number of neurons imaged simultaneously in vivo by a factor of 10 and enabling imaging for significantly longer durations relative to existing GEVIs. We used Voltron for in vivo voltage imaging in mice, zebrafish, and fruit flies. In the mouse cortex, Voltron allowed single-trial recording of spikes and subthreshold voltage signals from dozens of neurons simultaneously over a 15-minute period of continuous imaging. In larval zebrafish, Voltron enabled the precise correlation of spike timing with behavior.
机译:遗传编码的电压指示器(GEVI)能够以高时空分辨率监视神经元活动。但是,现有GEVI的实用性受到荧光蛋白和视紫红质的亮度和光稳定性的限制。我们设计了一个名为Voltron的GEVI,它使用明亮且光稳定的合成染料代替基于蛋白质的荧光团,从而将体内同时成像的神经元数量扩展了10倍,并且相对于现有GEVI而言,成像时间更长。我们将Voltron用于小鼠,斑马鱼和果蝇的体内电压成像。在鼠标皮层中,Voltron允许在连续成像的15分钟时间内同时记录来自数十个神经元的尖峰和亚阈值电压信号的单次试验。在幼虫斑马鱼中,Voltron使尖峰时间与行为精确关联。

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