Alberto Bilenca

Senior Academic

Three-dimensional single particle tracking using 4π self-interference of temporally phase-shifted fluorescence

Leanne Maurice, Alberto Bilenca

Single particle tracking in three dimensions is an indispensable tool for studying dynamic processes in various disciplines, including material sciences, physics, and biology, but often shows anisotropic three-dimensional spatial localization precision, which restricts the tracking precision, and/or a limited number of particles that can be tracked simultaneously over extended volumes. Here we developed an interferometric, three-dimensional fluorescence single particle tracking method based on conventional widefield excitation and temporal phase-shift interference of the emitted, high-aperture-angle, fluorescence wavefronts in a greatly simplified, free-running, triangle interferometer that enables tracking of multiple particles at the same time with <10-nm spatial localization precision in all three dimensions over extended volumes (~35 × 35 × 2 μm3) at video rate (25 Hz). We applied our method to characterize the microenvironment of living cells and up to ~40 μm deep in soft materials.

Publication language English
Journal Light: Science and Applications
Volume 12
Issue number 1
Publication status Published - 01.12.2023
58

ASJC Scopus subject areas

Electronic, Optical and Magnetic Materials
Atomic and Molecular Physics, and Optics
Access to Document
10.1038/s41377-023-01085-7
Other files and links
Link to publication in Scopus