Tominaga Yoko, Taketoshi Makiko, Maeda Naoko, Tominaga Takashi
Laboratory for Neural Circuit Systems, Institute of Neuroscience, Tokushima Bunri University.
Laboratory for Neural Circuit Systems, Institute of Neuroscience, Tokushima Bunri University;
J Vis Exp. 2019 Jun 20(148). doi: 10.3791/59692.
Wide-field single photon voltage-sensitive dye (VSD) imaging of brain slice preparations is a useful tool to assess the functional connectivity in neural circuits. Due to the fractional change in the light signal, it has been difficult to use this method as a quantitative assay. This article describes special optics and slice handling systems, which render this technique stable and reliable. The present article demonstrates the slice handling, staining, and recording of the VSD-stained hippocampal slices in detail. The system maintains physiological conditions for a long time, with good staining, and prevents mechanical movements of the slice during the recordings. Moreover, it enables staining of slices with a small amount of the dye. The optics achieve high numerical aperture at low magnification, which allows recording of the VSD signal at the maximum frame rate of 10 kHz, with 100 pixel x 100-pixel spatial resolution. Due to the high frame rate and spatial resolution, this technique allows application of the post-recording filters that provide sufficient signal-to-noise ratio to assess the changes in neural circuits.
脑片标本的宽视野单光子电压敏感染料(VSD)成像技术是评估神经回路功能连接性的一种有用工具。由于光信号的分数变化,一直难以将该方法用作定量检测手段。本文介绍了特殊的光学系统和脑片处理系统,这些系统使该技术变得稳定且可靠。本文详细展示了VSD染色海马脑片的处理、染色和记录过程。该系统能长时间维持生理条件,染色效果良好,并能防止记录过程中脑片的机械移动。此外,它能用少量染料对脑片进行染色。该光学系统在低倍率下实现了高数值孔径,这使得能够以10 kHz的最大帧率记录VSD信号,空间分辨率为100像素×100像素。由于高帧率和空间分辨率,该技术允许应用记录后滤波器,从而提供足够的信噪比来评估神经回路的变化。