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Super-wide-field two-photon imaging with a micro-optical device moving in post-objective space

机译:超广角双光子成像与微光学器件在物镜后空间中移动

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Wide-field imaging of neural activity at a cellular resolution is a current challenge in neuroscience. To address this issue, wide-field two-photon microscopy has been developed; however, the field size is limited by the objective size. Here, we develop a micro-opto-mechanical device that rotates within the post-objective space between the objective and brain tissue. Two-photon microscopy with this device enables sub-second sequential calcium imaging of left and right mouse sensory forelimb areas 6?mm apart. When imaging the rostral and caudal motor forelimb areas (RFA and CFA) 2?mm apart, we found high pairwise correlations in spontaneous activity between RFA and CFA neurons and between an RFA neuron and its putative axons in CFA. While mice performed a sound-triggered forelimb-movement task, the population activity between RFA and CFA covaried across trials, although the field-averaged activity was similar across trials. The micro-opto-mechanical device in the post-objective space provides a novel and flexible design to clarify the correlation structure between distant brain areas at subcellular and population levels.
机译:以细胞分辨率对神经活动进行广域成像是神经科学领域的当前挑战。为了解决这个问题,已经开发了宽视场双光子显微镜。但是,字段大小受目标大小限制。在这里,我们开发了一种微光机械装置,可以在物镜和脑组织之间的物镜后空间内旋转。借助该设备的双光子显微镜,可以在相隔6?mm的左右鼠标左前肢区域进行亚秒级顺序钙成像。当对相距2?mm的前额和尾端运动前肢区域(RFA和CFA)进行成像时,我们发现RFA和CFA神经元之间以及RFA神经元与其假定的轴突之间的自发活动具有高度的成对相关性。尽管小鼠执行了声音触发的前肢移动任务,但RFA和CFA之间的种群活动在各个试验之间存在协变量,尽管各个试验的场平均活动相似。后物镜空间中的微光机械装置提供了一种新颖而灵活的设计,以阐明亚细胞水平和人口水平上远处大脑区域之间的相关结构。

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