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Holographic 3D multi-spot two-photon excitation for fast optical stimulation in brain

机译:全息3D多点二光子励磁在大脑中快速光学刺激

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We report here a holographic high speed accessing microscope of sensory-driven synaptic activity across all inputs to single living neurons in the context of the intact cerebral cortex. This system is based on holographic multiple beam generation with spatial light modulator, we have demonstrated performance of the holographic excitation efficiency in several in vitro prototype system. 3D weighted iterative Fourier Transform method using the Ewald sphere in consideration of calculation speed has been adopted; multiple locations can be patterned in 3D with single hologram. Standard deviation of intensities of spots are still large due to the aberration of the system and/or hologram calculation, we successfully excited multiple locations of neurons in living mouse brain to monitor the calcium signals.
机译:在这里,我们在此报告全息高速访问显微镜,在完整的脑皮质的背景下对所有输入的所有输入中的感觉驱动的突触活动中的显微镜。该系统基于全息多光束发电,具有空间光调制器,我们在几种体外原型系统中表明了全息励磁效率的性能。采用3D加权迭代傅里叶变换方法,考虑到计算速度,使用Ewald领域;可以用单个全息图在3D中图案化多个位置。由于系统的像差和/或全息图计算,斑点强度的标准偏差仍然很大,我们在生活鼠标大脑中成功激发了多个神经元的位置,以监测钙信号。

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