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Super-resolved live-cell imaging using random illumination microscopy
DOI:10.1016/j.crmeth.2021.100009.png)
摘要
En 中文
Current super-resolution microscopy (SRM) methods suffer from an intrinsic complexity that might curtail their routine use in cell biology. We describe here random illumination microscopy (RIM) for live-cell imaging at super-resolutions matching that of 3D structured illumination microscopy, in a robust fashion. Based on speckled illumination and statistical image reconstruction, easy to implement and user-friendly, RIM is unaffected by optical aberrations on the excitation side, linear to brightness, and compatible with multicolor live-cell imaging over extended periods of time. We illustrate the potential of RIM on diverse biological applications, from the mobility of proliferating cell nuclear antigen (PCNA) in U2OS cells and kinetochore dynamics in mitotic S. pombe cells to the 3D motion of myosin minifilaments deep inside Drosophila tissues. RIM's inherent simplicity and extended biological applicability, particularly for imaging at increased depths, could help make SRM accessible to biology laboratories.
Keyword:
SUBDIFFRACTION-RESOLUTION
FLUORESCENCE MICROSCOPY
SUPERRESOLUTION
LIMIT
ABERRATION
MIGRATION
IMPROVES
NETWORK
MATRIX
MODEL
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期刊
IF:
4.5
论文数:
949
被引数:
2.0K
机构
引用论文
Sub-diffraction-limit imaging by stochastic optical reconstruction microscopy (STORM)通过随机光学重建显微镜 (STORM) 进行亚衍射极限成像
NATURE METHODS
IF32.1

