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Correction of depth-induced spherical aberration for deep observation using two-photon excitation fluorescence microscopy with spatial light modulator

机译:使用具有空间光调制器的双光子激发荧光显微镜对深度感应球差进行深度观察的校正

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摘要

We demonstrate fluorescence imaging with high fluorescence intensity and depth resolution in which depth-induced spherical aberration (SA) caused by refractive-index mismatch between the medium and biological sample is corrected. To reduce the impact of SA, we incorporate a spatial light modulator into a two-photon excitation fluorescence microscope. Consequently, when fluorescent beads in epoxy resin were observed with this method of SA correction, the fluorescence signal of the observed images was ∼27 times higher and extension in the direction of the optical axes was ∼6.5 times shorter at a depth of ∼890 μm. Thus, the proposed method increases the depth observable at high resolution. Further, our results show that the method improved the fluorescence intensity of images of the fluorescent beads and the structure of a biological sample.
机译:我们展示了具有高荧光强度和深度分辨率的荧光成像,其中对由介质和生物样品之间的折射率不匹配引起的深度引起的球差(SA)进行了校正。为了减少SA的影响,我们将空间光调制器合并到双光子激发荧光显微镜中。因此,当用这种SA校正方法观察到环氧树脂中的荧光珠时,在约890μm的深度处观察到的图像的荧光信号高约27倍,光轴方向上的延伸缩短约6.5倍。 。因此,提出的方法增加了在高分辨率下可观察到的深度。此外,我们的结果表明该方法改善了荧光珠图像的荧光强度和生物样品的结构。

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