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Resolution enhancement of two-photon microscopy via intensity-modulated laser scanning structured illumination

机译:通过强度调制激光扫描结构照明提高双光子显微镜的分辨率

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摘要

Conventional structured illumination microscopy (SIM) with wide-field illumination is an applicable tool to provide resolution enhancement. And yet its applications in thick specimens are still full of challenges. By combing the structured illumination concept with two-photon excitation, a laser scanning two-photon structured illumination microscope (LSTP-SIM) was constructed to gain similar to 1.42-fold lateral resolution enhancement in contrast to two-photon fluorescence microscopy. With a point-scanning geometry, an acoustic-optical modulator was used to modulate temporally the excitation intensity in order to produce the structured illumination pattern. The theoretical models of image formation and image reconstruction were clearly established. Simulation and experiments were both performed to show the capability of this system to enhance the lateral resolution. Combined with the inherent optical sectioning power of the two-photon excitation, LSTP-SIM would have the potential for applications in optically-thick specimens. (c) 2015 Optical Society of America
机译:具有宽视场照明的常规结构照明显微镜(SIM)是可提供分辨率提高的适用工具。然而,其在厚样品中的应用仍然充满挑战。通过将结构化照明概念与双光子激发相结合,构造了激光扫描两光子结构化照明显微镜(LSTP-SIM),与双光子荧光显微镜相比,其横向分辨率提高了1.42倍。具有点扫描几何形状,声光调制器用于临时调制激发强度,以产生结构化的照明图案。清晰地建立了图像形成和图像重建的理论模型。进行仿真和实验均显示了该系统增强横向分辨率的能力。结合双光子激发固有的光学切片能力,LSTP-SIM将有可能在光学厚度的样品中应用。 (c)2015年美国眼镜学会

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