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October 23, 2025Nature Communications2 citationsOpen Access

Real-time, high-throughput super-resolution microscopy via panoramic integration

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KYKyungduck YoonHYHansol YoonKTKidan Tadesse

Key Points

  • High-throughput screening improves the analysis of cellular function, enhancing biological research.
  • Demonstrated results from using super-resolution microscopy to capture detailed cellular processes effectively.
  • Assessment of the microscopy technique offers insights into cellular morphology and heterogeneity at subdiffractional levels.
  • This method highlights practical applications in biological insights that exceed traditional optical methods.

Abstract

We introduce super-resolution panoramic integration (SPI), an on-the-fly microscopy technique enabling instantaneous generation of subdiffractional images concurrently with scalable, high-throughput screening. SPI leverages multifocal optical rescaling, high-content sweeping, and synchronized line-scan readout while preserving minimal post-processing and compatibility with epi-fluorescence settings. We demonstrate SPI for various subcellular and populational morphology, function, and heterogeneity. This versatile platform offers a practical pathway toward biological insights beyond traditional optical and computational constraints. Yoon et al present super-resolution panoramic integration, a microscopy method that instantly captures super-resolution images with high throughput, enabling detailed biological study of cells beyond traditional optical limits

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Cite This Study

Yoon et al. (2025) studied this question.

synapsesocial.com/papers/68fa32a40df2e6cd2f74225fhttps://doi.org/10.1038/s41467-025-64368-0
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