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Analysis of fast axial scanning scheme using temporal focusing with acousto-optic deflectors

机译:基于时间聚焦和声光偏转器的快速轴向扫描方案分析

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Multiphoton microscopy has gained broad application in biology and medicine in the recent decade by assessing biological structure and function with high spatial resolution. Recently it has achieved fast two-dimensional x-y imaging by using inertia-free scanning mechanisms. However, the axial scanning speed is severely limited by mechanical inertia. This paper proposes a fast axial scanning scheme using temporal focusing implemented with an inertia-free scanning device, such as an acousto-optic device (AOD), and presents an experimental demonstration of two-photon axial scanning over a 9 m range using AODs operated from 80 to 120 MHz. A theoretical analysis provides the detailed characteristics of this method. The effects of both the ratio of collimating lens to objective lens focal lengths or magnification (M), and the degree of group delay dispersion (GDD) in the light source on the temporal focusing and axial scanning range are described by theory and experiments.
机译:近十年来,多光子显微镜通过以高空间分辨率评估生物学结构和功能,已在生物学和医学领域得到广泛应用。最近,它通过使用无惯性扫描机制实现了快速的二维x-y成像。但是,轴向扫描速度受到机械惯性的严重限制。本文提出了一种使用时间聚焦的快速轴向扫描方案,该方案是通过无惯性扫描设备(例如声光设备(AOD))实现的,并提出了在9 m范围内使用AOD操作的双光子轴向扫描的实验演示从80到120 MHz理论分析提供了该方法的详细特征。通过理论和实验描述了准直透镜与物镜焦距或放大倍数之比(M),以及光源中群延迟色散(GDD)程度对时间聚焦和轴向扫描范围的影响。

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