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Compensation of temporal and spatial dispersion for multi-photon acousto-optic laser-scanning microscopy

机译:多光子声光激光扫描显微镜的时间和空间色散补偿

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In laser-scanning microscopy, acousto-optic (AO) deflection provides a means to quickly position a laser beam to random locations throughout the field-of-view. Compared to conventional laser-scanning using galvanometer-driven mirrors, this approach increases the frame rate and signal-to-noise ratio, and reduces time spent illuminating sites of no interest. However, random-access AO scanning has not yet been combined with multi-photon microscopy, primarily because the femtosecond laser pulses employed are subject to significant amounts of both spatial and temporal dispersion upon propagation through common AO materials. Left uncompensated, spatial dispersion reduces the microscope's spatial resolution while temporal dispersion reduces the multi-photon excitation efficacy. In previous work, we have demonstrated, 1) the efficacy of a single diffraction grating scheme which reduces the spatial dispersion at least 3-fold throughout the field-of-view, and 2) the use of a novel stacked-prism pre-chirper for compensating the temporal dispersion of a pair of AODs using a shorter mechanical path length (2-4X) than standard prism-pair arrangements. In this work, we demonstrate for the first time the use of these compensation approaches with a custom-made large-area slow-shear TeO_2 AOD specifically suited for the development of a high-resolution 2-D random-access AO scanning multi-photon laser-scanning microscope (AO-MPLSM).
机译:在激光扫描显微镜中,声光(AO)偏转提供了一种将激光束快速定位到整个视场中随机位置的方法。与使用检流计驱动的反射镜的传统激光扫描相比,此方法增加了帧速率和信噪比,并减少了在无用的照明位置上花费的时间。但是,随机访问AO扫描尚未与多光子显微镜相结合,这主要是因为在通过普通AO材料传播时,所使用的飞秒激光脉冲在空间和时间上都有很大的色散。如果不进行补偿,空间色散会降低显微镜的空间分辨率,而时间色散会降低多光子激发效率。在先前的工作中,我们证明了:1)单衍射光栅方案的功效,该方案可在整个视场范围内将空间色散至少降低3倍,以及2)使用新颖的堆叠棱镜预pre子使用比标准棱镜对布置更短的机械路径长度(2-4X)来补偿一对AOD的时间色散。在这项工作中,我们首次展示了这些补偿方法与定制的大面积慢剪切TeO_2 AOD的结合使用,特别适合于开发高分辨率二维随机访问AO扫描多光子激光扫描显微镜(AO-MPLSM)。

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