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共聚焦和超分辨率显微荧光图像的共定位分析浅谈 被引量:3
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作者 关苑君 容婵 +3 位作者 梁翠莎 李娟 蓝秀健 吴珏珩 《电子显微学报》 CAS CSCD 北大核心 2020年第1期90-99,共10页
共定位分析是研究蛋白或分子相互作用的有效工具。荧光显微图像的共定位分析包括定性分析和定量分析两部分。严格而言,共定位分析是使用共定位系数去描述两个或以上的分子间变量关系。目前,许多研究工作者对荧光显微图像的共定位分析需... 共定位分析是研究蛋白或分子相互作用的有效工具。荧光显微图像的共定位分析包括定性分析和定量分析两部分。严格而言,共定位分析是使用共定位系数去描述两个或以上的分子间变量关系。目前,许多研究工作者对荧光显微图像的共定位分析需求大。然而,对需要做共定位分析的样品要求、采图要求和分析方法等普遍存在疑问。在本文中,笔者结合多年成像类设备共享服务的经验,基于激光共聚焦和超分辨率荧光显微图像,详细阐述共定位定性和定量分析的方法,以供其他科研工作者参考和借鉴。 展开更多
关键词 显微图像 共定位 光学显微镜 共聚焦显微镜(confocal) 分辨率显微镜(sim/storm)
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Structured illumination microscopy for super-resolution and optical sectioning 被引量:16
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作者 Dan Dan Baoli Yao Ming Lei 《Chinese Science Bulletin》 SCIE EI CAS 2014年第12期1291-1307,共17页
Optical microscopy plays an essential role in biological studies due to its capability and compatibility of non-contact,minimally invasive observation and measurement of live specimens.However,the conventional optical... Optical microscopy plays an essential role in biological studies due to its capability and compatibility of non-contact,minimally invasive observation and measurement of live specimens.However,the conventional optical microscopy only has a spatial resolution about200 nm due to the Abbe diffraction limit,and also lacks the ability of three-dimensional imaging.Super-resolution farfield optical microscopy based on special illumination schemes has been dramatically developed over the last decade.Among them,only the structured illumination microscopy(SIM)is of wide-field geometry that enables it easily compatible with the conventional optical microscope.In this article,the principle of SIM was introduced in terms of point spread function(PSF)and optical transform function(OTF)of the optical system.The SIM for super-resolution(SIM-SR)proposed by Gustafsson et al.and the SIM for optical sectioning(SIM-OS)proposed by Neil et al.are the most popular ones in the research community of microscopy.They have the same optical configuration,but with different data postprocessing algorithms.We mathematically described the basic theories for both of the SIMs,respectively,and presented some numerical simulations to show the effects of super-resolution and optical sectioning.Various approaches to generation of structured illumination patterns were reviewed.As an example,a SIM system based on DMDmodulation and LED-illumination was demonstrated.A lateral resolution of 90 nm was achieved with gold nanoparticles.The optical sectioning capability of the microscope was demonstrated with Golgi-stained mouse brain neurons,and the sectioning strength of 930 nm was obtained. 展开更多
关键词 光学显微镜 光学切片 分辨率 结构照明 sim 金纳米粒子 成像能力 光学传递函数
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