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Direct microsecond wide-field single-molecule tracking and super-resolution mapping via CCD vertical shift

delete2025-11-25
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M
Megan A. Steves
徐科 (Ke Xu) *
DOI:10.1038/s41467-025-65529-xdelete
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Abstract

Abstract

En 中文
Wide-field single-molecule tracking is often limited by the ~10 ms camera frame time. We introduce SpeedyTrack, which directly enables microsecond wide-field single-molecule tracking/imaging on common setups. Harnessing the native sub-microsecond vertical charge shifting capability of EM-CCDs, SpeedyTrack staggers wide-field single-molecule images along the CCD chip at ~10-row spacings between consecutive timepoints, effectively projecting the time domain to the spatial domain. Wide-field tracking is achieved for molecules diffusing at up to 1000 µm2/s at 50 µs temporal resolutions for >30 timepoints. Concurrent Förster resonance energy transfer measurements further elucidate molecular states. By implementing temporally patterned vertical shifting, VS-SpeedyTrack next deconvolves the spatial and temporal information to map trajectories at the super-resolution level, resolving the diffusion mode of a fluorescent protein in live cells with nanoscale resolution. Without modifications to existing optics or electronics, SpeedyTrack provides a facile solution to the microsecond tracking of single molecules and their super-resolution mapping in the wide field. Working off the native fast vertical shifting capability of EM-CCDs, SpeedyTrack achieves microsecond time-resolution single-molecule tracking and super-resolution mapping in the wide field without the need to modify existing optics or electronics.
Keywords:
SpeedyTrack
single-molecule tracking
EM-CCD
microsecond resolution
super-resolution mapping
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Journal

Nature Communications cover
Nature Communications
IF:
15.7
Papers:
9.2W
Citations:
91.2W

Organization

B
berkeley
Scholars:
55
Papers: 25
Citations: 0