论文标题

Sofism:超分辨率光波动图像扫描显微镜

SOFISM: Super-resolution optical fluctuation image scanning microscopy

论文作者

Sroda, Aleksandra, Makowski, Adrian, Tenne, Ron, Rossman, Uri, Lubin, Gur, Oron, Dan, Lapkiewicz, Radek

论文摘要

超分辨率光学显微镜是一个迅速发展的科学领域,专门用于成像次波长大小的物体,在生物学和技术的多个分支中留下了痕迹。尽管几种超分辨率的光学显微镜方法已成为生命科学成像中的常见工具,但由尖端技术支持的新方法继续出现。超分辨率工具箱的最新添加图像扫描显微镜(ISM)以稳健且直接的方式实现了多达两倍的横向分辨率增强。为了进一步增强ISM在所有三个维度上的分辨率,我们在此介绍和实验证明了超分辨率光波动图像扫描显微镜(SOFIST)。测量ISM体系结构中的荧光波动对比度,我们获得了X2.5横向分辨率超过衍射极限的图像,以及增强的轴向分辨率,用于用市售的量子点标记的固定细胞样品。 ISM技术的固有时间平均可以使图像获取在毫秒刻度像素停留时间内的波动相关对比度。因此,Sofism可以使用标准的荧光标签和合理的获取时间在略微修改的共聚焦显微镜中提供强大的路径,以实现略微修改的共聚焦显微镜。

Super-resolution optical microscopy is a rapidly evolving scientific field dedicated to imaging sub-wavelength sized objects, leaving its mark in multiple branches of biology and technology. While several super-resolution optical microscopy methods have become a common tool in life science imaging, new methods, supported by cutting-edge technology, continue to emerge. One rather recent addition to the super-resolution toolbox, image scanning microscopy (ISM), achieves an up to twofold lateral resolution enhancement in a robust and straightforward manner. To further enhance ISM's resolution in all three dimensions, we present and experimentally demonstrate here super-resolution optical fluctuation image scanning microscopy (SOFISM). Measuring the fluorescence fluctuation contrast in an ISM architecture, we obtain images with a x2.5 lateral resolution beyond the diffraction limit along with an enhanced axial resolution for a fixed cell sample labeled with commercially available quantum dots. The inherent temporal averaging of the ISM technique enables image acquisition of the fluctuation correlation contrast within millisecond scale pixel dwell times. SOFISM can therefore offer a robust path to achieve high resolution images within a slightly modified confocal microscope, using standard fluorescent labels and within reasonable acquisition times.

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