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Dual-slit confocal light sheet microscopy for in vivo whole-brain imaging of zebrafish

机译:双缝共焦光片显微镜用于斑马鱼体内全脑成像

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摘要

In vivo functional imaging at single-neuron resolution is an important approach to visualize biological processes in neuroscience. Light sheet microscopy (LSM) is a cutting edge in vivo imaging technique that provides micron-scale spatial resolution at high frame rate. Due to the scattering and absorption of tissue, however, conventional LSM is inadequate to resolve cells because of the attenuated signal to noise ratio (SNR). Using dual-beam illumination and confocal dual-slit detection, here a dual-slit confocal LSM is demonstrated to obtain the SNR enhanced images with frame rate twice as high as line confocal LSM method. Through theoretical calculations and experiments, the correlation between the slit’s width and SNR was determined to optimize the image quality. In vivo whole brain structural imaging stacks and the functional imaging sequences of single slice were obtained for analysis of calcium activities at single-cell resolution. A two-fold increase in imaging speed of conventional confocal LSM makes it possible to capture the sequence of the neurons’ activities and help reveal the potential functional connections in the whole zebrafish’s brain.
机译:单神经元分辨率的体内功能成像是可视化神经科学中生物学过程的重要方法。光学片显微镜(LSM)是一种先进的体内成像技术,可在高帧频下提供微米级的空间分辨率。然而,由于组织的散射和吸收,传统的LSM由于信噪比(SNR)的衰减而无法分辨细胞。使用双光束照明和共焦双缝检测,这里展示了一种双缝共焦LSM,以帧速率是线共焦LSM方法两倍的帧率获得SNR增强图像。通过理论计算和实验,确定了狭缝宽度和SNR之间的相关性,以优化图像质量。获得体内全脑结构成像堆栈和单个切片的功能成像序列,以分析单细胞分辨率下的钙活性。传统共聚焦LSM的成像速度提高了两倍,从而可以捕获神经元活动的序列,并有助于揭示整个斑马鱼大脑中潜在的功能连接。

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