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Fast, in vivo voltage imaging using a red fluorescent indicator

机译:快速,在使用红色荧光指示器的体内电压成像中

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Genetically encoded voltage indicators (GEVIs) are emerging optical tools for acquiring brain-wide cell-type-specific functional data at unparalleled temporal resolution. To broaden the application of GEVIs in high-speed multispectral imaging, we used a high-throughput strategy to develop voltage-activated red neuronal activity monitor (VARNAM), a fusion of the fast Acetabularia opsin and the bright red fluorophore mRuby3. Imageable under the modest illumination intensities required by bright green probes (50 mW mm(-2)), VARNAM is readily usable in vivo. VARNAM can be combined with blue-shifted optical tools to enable cell-type-specific all-optical electrophysiology and dual-color spike imaging in acute brain slices and live Drosophila. With enhanced sensitivity to subthreshold voltages, VARNAM resolves postsynaptic potentials in slices and cortical and hippocampal rhythms in freely behaving mice. Together, VARNAM lends a new hue to the optical toolbox, opening the door to high-speed in vivo multispectral functional imaging.
机译:基因编码的电压指示器(GEVIS)是在无与伦比的时间分辨率下获取脑宽的细胞类型特定功能数据的光学工具。为了扩大Gevis在高速多光谱成像中的应用,我们使用了高通量策略来开发电压激活的红色神经元活动监测仪(Varnam),Fast AceTabularia Opsin的融合和明亮的红色荧光团Mruby3。在亮绿色探针所需的适度照明强度下可想而是可想而起(& 50 mw mm(-2)),Varnam在体内易用。 varnam可以与蓝色偏移的光学工具组合,以使细胞类型特异性的全光学电生理学和双色尖峰成像在急性脑切片和活果蝇中实现。随着对亚阈值电压的增强敏感性,varnam在自由行为小鼠中解析了切片和皮质和海马节奏中的突触潜力。 varnam一起为光学工具箱带来了一个新的色调,在Vivo多光谱功能成像中打开了高速的门。

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