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Enhanced Light Sheet Elastic Scattering Microscopy by Using a Supercontinuum Laser

机译:通过使用超不连续激光增强光片弹性散射显微镜

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Light sheet fluorescence microscopy techniques have revolutionized biological microscopy enabling low-phototoxic long-term 3D imaging of living samples. Although there exist many light sheet microscopy (LSM) implementations relying on fluorescence, just a few works have paid attention to the laser elastic scattering source of contrast available in every light sheet microscope. Interestingly, elastic scattering can potentially disclose valuable information from the structure and composition of the sample at different spatial scales. However, when coherent scattered light is detected with a camera sensor, a speckled intensity is generated on top of the native imaged features, compromising their visibility. In this work, we propose a novel light sheet based optical setup which implements three strategies for dealing with speckles of elastic scattering images: (i) polarization filtering; (ii) reducing the temporal coherence of the excitation laser light; and, (iii) reducing the spatial coherence of the light sheet. Finally, we show how these strategies enable pristine light-sheet elastic-scattering imaging of structural features in challenging biological samples avoiding the deleterious effects of speckle, and without relying on, but complementing, fluorescent labelling.
机译:光板荧光显微镜技术具有彻底改变的生物显微镜,从而实现了活样品的低光毒性长期3D成像。尽管存在许多灯纸显微镜(LSM)实现依赖于荧光,但只有少数作品已经注意到每种光板显微镜中可用的激光弹性散射源。有趣的是,弹性散射可能潜在地从不同的空间尺度上从样品的结构和组成中公开了有价值的信息。然而,当用相机传感器检测到相干散射光时,在本机成像特征的顶部产生斑点强度,损害其可见性。在这项工作中,我们提出了一种基于光片的光学装置,它可以实现三种策略,用于处理弹性散射图像的斑点:(i)偏振滤波; (ii)降低激光激光的时间相干; (iii)降低了光片的空间相干性。最后,我们展示了这些策略如何使结构特征的原始光纸弹性散射成像在具有挑战性的生物样本中避免斑点的有害影响,而无需依赖,但补充,荧光标记。

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