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Current limitations in super-resolution fluorescence microscopy for biological specimens: how deep can we go from the cover glass?

机译:生物标本超分辨率荧光显微镜的电流限制:我们可以从盖子玻璃上何种深度?

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Diffraction limit of resolution has been one of the biggest limitations in the optical microscopy. Super-resolution fluorescence microscopy has enabled us to break this limit. However, for the observations of real biological specimens, especially for the imaging of tissues or whole body, the target structures of interest are often embedded deep inside the specimen. Here, we would present our results to extend the target of the super-resolution microscopy deeper into the cells. Confocal microscope optics work effectively to minimize the effect by the aberrations by the cellular components, but at the expense of the signal intensities. Spherical aberrations by the refractive index mismatch between the cellular environment and the immersion liquid can be much larger, but can be reduced by adjusting the correction collar at the objective lens.
机译:分辨率的衍射极限是光学显微镜中最大的限制之一。超分辨率荧光显微镜使我们能够打破这个限制。然而,对于真实生物标本的观察,特别是对于组织或全身的成像,靶标结构通常嵌入样本内部。在这里,我们将介绍我们的结果,以将超分辨率显微镜的目标延伸到细胞中。共聚焦显微镜光学器件有效地工作,以最小化蜂窝元件的像差的效果,而是以牺牲信号强度为代价。通过蜂窝环境和浸入液之间的折射率失配的球面像差可以大得多,但是可以通过在物镜处调节校正套环来减小。

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