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Aberration-free multi-plane imaging of neural activity from the mammalian brain using a fast-switching liquid crystal spatial light modulator

机译:使用快速切换液晶空间光调制器的哺乳动物大脑神经活动的无像差多平面成像

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摘要

We report a novel two-photon fluorescence microscope based on a fast-switching liquid crystal spatial light modulator and a pair of galvo-resonant scanners for large-scale recording of neural activity from the mammalian brain. The spatial light modulator is used to achieve fast switching between different imaging planes in multi-plane imaging and correct for intrinsic optical aberrations associated with this imaging scheme. The utilized imaging technique is capable of monitoring the neural activity from large populations of neurons with known coordinates spread across different layers of the neocortex in awake and behaving mice, regardless of the fluorescent labeling strategy. During each imaging session, all visual stimulus driven somatic activity could be recorded in the same behavior state. We observed heterogeneous response to different types of visual stimuli from 3,300 excitatory neurons reaching from layer II/III to V of the striate cortex.
机译:我们报告了一种新型的基于快速切换的液晶空间光调制器和一对振镜扫描仪的新型双光子荧光显微镜,用于从哺乳动物大脑大规模记录神经活动。空间光调制器用于在多平面成像中实现不同成像平面之间的快速切换,并校正与该成像方案相关的固有光学像差。无论荧光标记策略如何,所利用的成像技术都能够监测已知坐标分布在清醒和举止小鼠的新皮质不同层中的大批神经元的神经活动。在每个成像过程中,所有视觉刺激驱动的躯体活动都可以记录为相同的行为状态。我们从 从条纹皮层的II / III层到V层有3,300个兴奋性神经元。

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