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Updated: May 1, 2026

Three-dimensional Imaging of Bacterial Cells for Accurate Cellular Representations and Precise Protein Localization
Published on: October 29, 2019
Tomographic phase microscopy of living three-dimensional cell cultures
Arkadiusz Kuś1, Michał Dudek1, Björn Kemper2
1Warsaw University of Technology, Institute of Micromechanics and Photonics, Photonics Engineering Division, Faculty of Mechatronics, Sw. A. Boboli 8 Street, 02-525 Warsaw, Poland.
Abstract:
A successful application of self-interference digital holographic microscopy in combination with a sample-rotation-based tomography module for three-dimensional (3-D) label-free quantitative live cell imaging with subcellular resolution is demonstrated. By means of implementation of a hollow optical fiber as the sample cuvette, the observation of living cells in different 3-D matrices is enabled. The fiber delivers a stable and accurate rotation of a cell or cell cluster, providing quantitative phase data for tomographic reconstruction of the 3-D refractive index distribution with an isotropic spatial resolution. We demonstrate that it is possible to clearly distinguish and quantitatively analyze several cells grouped in a "3-D cluster" as well as subcellular organelles like the nucleoli and local internal refractive index changes.
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