Sławomir Tomczewski, PhD
PhD, Warsaw University of Technology
Senior Researcher
Optical Coherence Tomography (OCT), Optoretinography (ORG)
Description
Slawomir Tomczewski has obtained his PhD degree from Warsaw University of Technology. While doing his PhD, he also participated in three ACTPHAST projects, in which he cooperated with companies. Two of the projects were conducted with Kongsberg Automotive and one with Difrotec.
After finishing his PhD, he gained commercial experience while working at EDC Warsaw (General Electric Aviation) as a Software Engineer. Finally, before starting his current position, he worked as a Holographic System Engineer at Envisics LTD (Milton Keynes, UK).
Slawomir Tomczewski is currently developing flicker optoretinography, a method in which OCT is used to measure retina’s response to stimulation with periodic light pulses.
Publication list
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Proceedings of the National Academy of Sciences
Photopic flicker optoretinography captures the light-driven length modulation of photoreceptors during phototransduction
10.1073/pnas.24217221222025
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STAR Protocols
In vivo volumetric analysis of retinal vascular hemodynamics in mice with spatio-temporal optical coherence tomography
10.1117/1.NPh.11.4.0450032024
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Optics Letters
Chirped flicker optoretinography for in vivo characterization of human photoreceptors’ frequency response to light
10.1364/OL.5146372024
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Multiwavelength laser doppler holography (MLDH) in spatiotemporal optical coherence tomography (STOC-T)
10.1016/j.bbe.2024.03.0022024
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Biocybernetics and Biomedical Engineering
Imaging the retinal and choroidal vasculature using Spatio-Temporal Optical Coherence Tomography (STOC-T)
10.1016/j.bbe.2023.12.0022024
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Technical Digest Series
Flicker optoretinography (f-ORG) with chirped frequency stimulus for retinal tissue characterisation
10.1364/BODA.2023.JTu4B.52023
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Spatio-temporal optical coherence tomography (STOC-T) for high-resolution imaging of the human and mouse retina in vivo
10.1364/BODA.2023.DTh2A.22023
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Journal of Clinical Investigation
In vivo imaging of the human retina using a two-photon excited fluorescence ophthalmoscope
10.1016/j.xpro.2023.1022252023
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SPIE Proceedings
Spatio-temporal optical coherence tomography (STOC-T) focal plane adjustment in the mouse retina aided by a fundus camera
10.1117/12.26529562023
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iScience
Spatio-Temporal Optical Coherence Tomography provides full thickness imaging of the chorioretinal complex
10.1016/j.isci.2022.1055132022
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Biomedical Optics Express
Light-adapted flicker optoretinograms captured with a spatio-temporal optical coherence-tomography (STOC-T) system
10.1364/BOE.4445672022
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SPIE Proceedings
Towards spatially mapped frequency response of human photoreceptor length variation with flicker optoretinography
10.1117/12.26095132022
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Technical Digest Series
Two-photon excited fluorescence scanning laser ophthalmoscope for in vivo imaging of the human eye
10.1364/TRANSLATIONAL.2022.TTu2B.42021
Research projects
Research groups
Physical Optics and Biophotonics
The research in our group can be seen as a perfect interplay between physics, biology and chemistry. We are focusing on developing imaging techniques and using them in many biological and chemical systems.