Piotr Węgrzyn, MSc
PhD Student
Full Field Fourier Domain OCT, Translational Research, Computational optics, Physical Optics,
Description
An inexhaustible generator of ideas, which he turns with determination into reality. Piotr is currently a PhD student at the International Center for Translational Eye Research Center (ICTER) and the University of Warsaw. He is developing a new implementation of optical coherence tomography (OCT) using ultras fast cameras and various light modulation scenario. He graduated from the Universitat Politècnica de Catalunya in Barcelona, where he prepared his Master’s thesis on medical optics in Turgut Durduran’s group at ICFO. In 2017 he graduated from the University of Warsaw with a bachelor degree in physics.
During his studies, Piotr was involved in grants funded by the FNP, NCN and Horyzont2020 framework. Based on his scientific achievements, he received scholarships from the Rector of the University of Warsaw, the Minister of Science and Higher Education and the La Pedrera Foundation within the “ICFO Summer Fellowship”. He gained experience and knowledge about optics and photonics by participating in the most important international conferences and summer schools.
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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Biocybernetics and Biomedical Engineering
Imaging of retinal ganglion cells and photoreceptors using Spatio-Temporal Optical Coherence Tomography (STOC-T) without hardware-based adaptive optics
10.1016/j.bbe.2025.01.0012025
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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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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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SPIE Proceedings
High-speed, in vivo, volumetric imaging of mouse retinal tissue with spatio-temporal optical coherence tomography (STOC-T)
10.1117/12.26488932023
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Technical Digest Series
Functional and Structural Imaging of Retinal Tissue with Spatio-Temporal Optical Coherence Tomography (STOC-T)
10.1364/FIO.2022.FW7D.22022
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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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Technical Digest Series
In vivo frequency characterization of human photoreceptors response to a flicker stimulus with optoretinography
10.1364/OCT.2022.CS3E.12022
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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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Optics Letters
Multimode fiber as a tool to reduce crosstalk in Fourier-domain full-field optical coherence tomography
10.1364/OL.4494982022
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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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Optics Letters
Computational aberration correction in spatiotemporal optical coherence (STOC) imaging
10.1364/OL.3847962020
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.