Structured Illumination Microscopy

Structured illumination microscopy (SIM) is a super-resolution imaging technique that reveals cellular structures and dynamics beyond the conventional light microscope’s diffraction limit. By projecting known striped or patterned light onto a specimen, SIM generates interference patterns whose spatial information is computationally combined to reconstruct an image with improved resolution. In biology, this approach supports visualization of organelles, cytoskeletal features, and molecular distributions in fixed or living cells. Because it can use relatively low illumination doses and capture rapid sequences, SIM helps investigate dynamic processes such as trafficking, cell division, and signaling while preserving temporal information.

Structured Illumination Microscopy - Related Videos

Research

JoVE Journal - Bioengineering
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A Guide to Structured Illumination TIRF Microscopy at High Speed with Multiple Colors

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Cited by 114 •

2016

This article provides an in depth guide for the assembly and operation of a structured illumination microscope operating with total internal reflection fluorescence illumination (TIRF-SIM) to image dynamic biological processes with optical super-resolution in multiple colors.

Research

JoVE Journal - Neuroscience

Imaging Dendritic Spines of Rat Primary Hippocampal Neurons using Structured Illumination Microscopy

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Cited by 10 •

2014

This article describes a working protocol to image dendritic spines from hippocampal neurons in vitro using Structured Illumination Microscopy (SIM). Super-resolution microscopy using SIM provides image resolution significantly beyond the light diffraction limit in all three spatial dimensions, allowing the imaging of individual dendritic spines with improved detail.

Highly Resolved Intravital Striped-illumination Microscopy of Germinal Centers

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2014

High-resolution intravital imaging with enhanced contrast up to 120 µm depth in lymph nodes of adult mice is achieved by spatially modulating the excitation pattern of a multi-focal two-photon microscope. In 100 µm depth we measured resolutions of 487 nm (lateral) and 551 nm (axial), thus circumventing scattering and diffraction limits.

Research

JoVE Journal - Biology
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Super-resolution Imaging of the Cytokinetic Z Ring in Live Bacteria Using Fast 3D-Structured Illumination Microscopy (f3D-SIM)

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Cited by 22 •

2014

Spatiotemporal information about dynamic proteins inside live cells is crucial for understanding biology. A type of super-resolution microscopy called fast 3D-structured illumination microscopy (f3D-SIM) reveals unique information about the cytokinetic Z ring in bacteria: both its bead-like appearance and the rapid dynamics of FtsZ within the ring.

Cortical Actin Flow in T Cells Quantified by Spatio-temporal Image Correlation Spectroscopy of Structured Illumination Microscopy Data

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Cited by 17 •

2015

To investigate flow velocities and directionality of filamentous-actin at the T cell immunological synapse, live-cell super-resolution imaging is combined with total internal reflection fluorescence and quantified with spatio-temporal image correlation spectroscopy.

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