Issue 32, 2020

Active-modulated, random-illumination, super-resolution optical fluctuation imaging

Abstract

Super-resolution optical fluctuation imaging (SOFI) provides subdiffraction resolution based on the analysis of temporal stochastic intensity fluctuations. However, conventional SOFI imaging relies on the intrinsic blinking properties of fluorescent markers and suffers from severe artifacts and signal losses owing to the unmatched blinking on-time ratio. Herein, we propose active-modulated, random-illumination, super-resolution optical fluctuation imaging that allows the traditional SOFI to overcome the effect of the intrinsic impertinent blinking characteristic of fluorescent markers. We demonstrate theoretically and experimentally that this method of active-modulated random illumination can generate random illumination patterns with a controllable blinking on-time ratio to match the high-order SOFI reconstruction considerably reducing the generated artifacts and signal losses. High-order, high-quality images can be obtained with increased lateral resolution.

Graphical abstract: Active-modulated, random-illumination, super-resolution optical fluctuation imaging

Supplementary files

Article information

Article type
Paper
Submitted
25 Apr 2020
Accepted
13 Jul 2020
First published
14 Jul 2020

Nanoscale, 2020,12, 16864-16874

Active-modulated, random-illumination, super-resolution optical fluctuation imaging

B. Wang, Z. Liu, L. Zhou, Y. Fei, C. Yang, L. Mi, Q. Mu and J. Ma, Nanoscale, 2020, 12, 16864 DOI: 10.1039/D0NR03255G

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