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Wavefront shaping of a Bessel light field enhances light sheet microscopy with scattered light

机译:贝塞尔光场的波阵面成形增强了散射光对光学片的显微镜观察

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Light sheet microscopy has seen a resurgence as it facilitates rapid, high contrast, volumetric imaging with minimal sample exposure. Initially developed for imaging scattered light, this application of light sheet microscopy has largely been overlooked but provides an endogenous contrast mechanism which can complement fluorescence imaging and requires very little or no modification to an existing light sheet fluorescence microscope. Fluorescence imaging and scattered light imaging differ in terms of image formation. In the former the detected light is incoherent and weak whereas in the latter the coherence properties of the illumination source, typically a laser, dictate the coherence of detected light, but both are dependent on the quality of the illuminating light sheet. Image formation in both schemes can be understood as the convolution of the light sheet with the specimen distribution. In this paper we explore wavefront shaping for the enhancement of light sheet microscopy with scattered light. We show experimental verification of this result, demonstrating the use of the propagation invariant Bessel beam to extend the field of view of a high resolution scattered light, light sheet microscope and its application to imaging of biological super-cellular structures with sub-cellular resolution. Additionally, complementary scattering and fluorescence imaging is used to characterize the enhancement, and to develop a deeper understanding of the differences of image formation between contrast mechanisms in light sheet microscopy.
机译:光学薄片显微镜已经复苏,因为它有助于快速,高对比度,体积成像且样品暴露量最小。最初是为成像散射光而开发的,光片显微镜的这种应用在很大程度上被忽略了,但是提供了一种内源的对比机制,可以补充荧光成像,并且对现有的光片荧光显微镜几乎不需要修改。荧光成像和散射光成像在图像形成方面有所不同。在前者中,检测到的光是非相干且微弱的,而在后者中,照明源(通常是激光)的相干特性决定了所检测到的光的相干性,但是两者都取决于照明光片的质量。两种方案中的图像形成都可以理解为光片与样本分布的卷积。在本文中,我们探索了波前整形,以增强散射光的光片显微镜。我们展示了这一结果的实验​​验证,证明了使用传播不变贝塞尔光束扩展了高分辨率散射光的视野,光片显微镜及其在具有亚细胞分辨率的生物超细胞结构成像中的应用。此外,互补散射和荧光成像用于表征增强效果,并加深了对光片显微镜中对比机制之间图像形成差异的理解。

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