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Hybrid light-sheet and light-field microscope for high resolution and large volume neuroimaging

机译:混合光片和光场显微镜用于高分辨率和大体积神经成像

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摘要

Large scale simultaneous recording of fast patterns of neural activity remains challenging. Volumetric imaging modalities such as scanning-beam light-sheet microscopy (LSM) and wide-field light-field microscopy (WFLFM) fall short of the goal due to their complex calibration procedure, low spatial resolution, or high-photobleaching. Here, we demonstrate a hybrid light-sheet light-field microscopy (LSLFM) modality that yields high spatial resolution with simplified alignment of the imaging plane and the excitation plane. This new modality combines the selective excitation of light-sheet illumination with volumetric light-field imaging. This modality overcomes the current limitations of the scanning-beam LSM and WFLFM implementations. Compared with LSM, LSLFM captures volumetric data at a frame rate 50× lower than the rate of LSM and requires no dynamic calibration. Compared with WFLFM, LSLFM produces moderate improvements in spatial resolutions, 10 times improvement in the contrast when imaging fluorescent beads, and 3.2× the signal-to-noise ratio in the detection of neural activity when imaging live zebrafish expressing a genetically encoded calcium sensor.
机译:大规模同时记录神经活动的快速模式仍然具有挑战性。由于其复杂的校准程序,低空间分辨率或高光漂白性,诸如扫描束光片显微镜(LSM)和宽视野光场显微镜(WFLFM)之类的体积成像形式未能达到目标。在这里,我们演示了一种混合光片光场显微镜(LSLFM)模式,该模式可产生高空间分辨率,并简化了成像平面和激发平面的对齐方式。这种新形式将光片照明的选择性激发与体积光场成像结合在一起。这种方式克服了扫描光束LSM和WFLFM实施方案的当前限制。与LSM相比,LSLFM以比LSM的速率低50倍的帧速率捕获体积数据,并且不需要动态校准。与WFLFM相比,LSLFM在空间分辨率上产生了适度的提高,在对荧光珠成像时对比度提高了10倍,在对表达遗传编码钙传感器的斑马鱼成像时神经活动检测中的信噪比提高了3.2倍。

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