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首页> 外文期刊>Scientific reports. >Aqueous mounting media increasing tissue translucence improve image quality in Structured Illumination Microscopy of thick biological specimen
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Aqueous mounting media increasing tissue translucence improve image quality in Structured Illumination Microscopy of thick biological specimen

机译:水性安装介质增加组织半透明改善厚生物样本结构照明显微镜中的图像质量

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摘要

Structured Illumination Microscopy (SIM) is a super-resolution microscopy method that has significantly advanced studies of cellular structures. It relies on projection of illumination patterns onto a fluorescently labelled biological sample. The information derived from the sample is then shifted to a detectable band, and in the process of image calculation in Fourier space the resolution is doubled. Refractive index homogeneity along the optical path is crucial to maintain a highly modulated illumination pattern necessary for high-quality SIM. This applies in particular to thick samples consisting of large cells and tissues. Surprisingly, sample mounting media for SIM have not undergone a significant evolution for almost a decade. Through identification and systematic evaluation of a number of non-hazardous, water-soluble chemical components of mounting media, we demonstrate an unprecedented improvement in SIM-image quality. Mounting solutions presented in this research are capable of reducing abundant light scattering which constitutes the limiting factor in 3D-SIM imaging of large Hodgkin’s lymphoma and embryonic stem cells as well as 10?μm tissue sections. Moreover, we demonstrate usefulness of some of the media in single molecule localisation microscopy. The results presented here are of importance for standardisation of 3D-SIM data acquisition pipelines for an expanding community of users.
机译:结构化照明显微镜(SIM)是一种超分辨率显微镜方法,具有对细胞结构的显着高度研究。它依赖于照明图案的投影到荧光标记的生物样品上。然后,从样品衍生的信息被移位到可检测的频带,并且在傅里叶空间中的图像计算过程中,分辨率加倍。沿光学路径的折射率均匀性是至关重要的,以维持高质量的SIM所需的高度调制照明图案。这尤其适用于由大细胞和组织组成的厚样品。令人惊讶的是,SIM的样品安装介质几乎没有经历了几十年的重要演变。通过识别和系统评估许多安装介质的非危险,水溶性化学成分,我们证明了SIM-图像质量的前所未有的改善。本研究中提出的安装解决方案能够减少丰富的光散射,其构成大霍奇金淋巴瘤和胚胎干细胞的3D-SIM成像中的限制因子以及10?μm组织切片。此外,我们证明了在单分子定位显微镜中的一些介质的有用性。此处提出的结果对于用于扩展用户社区的3D-SIM数据采集管道标准化是重要的。

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