Publications

Measured with Photonscore instruments

2026

  • A. Hunt, Z. Y. Yeo, A. Russell, L. Mathieson, M. Veremen, A. Akram. FLIMKit: fluorescence lifetime imaging analysis. Software, Zenodo (2026). doi:10.5281/zenodo.21931131
  • S. Simoncelli, A. Gentili, R. Hollmann, C. Zaza, H. Holmes, K. Kołątaj, D. Williamson, I. Carlon-Andres, T. Malinauskas, G. Acuna, S. Padilla Parra. Fluorescence-lifetime encoding for scalable single-protein-resolution imaging. Research Square, preprint (2026). doi:10.21203/rs.3.rs-10631003/v1
  • F. Izraelevitch-Patitucci, S. Tolila, I. Ellafi, J.-P. Rivet, M. Hugbart, G. Labeyrie, O. Lai, A. Zmija, W. Guerin, R. Kaiser. On-sky single-photon time resolution of 35 ps with White Rabbit synchronization: towards the measurement of the size of a white dwarf star. Proc. SPIE 14148, Optical and Infrared Interferometry and Imaging X (2026). doi:10.1117/12.3104836 · arXiv:2606.25817
  • A. Hunt, A. Akram. photonsfile: a pure-Python reader for Photonscore LINCam .photons (D7) files. Software, Zenodo (2026). doi:10.5281/zenodo.21360199
  • D. A. Orlov, Y. Prokazov, E. Turbin, E. Kernen. PhotonPix: single-photon detector with 10 ps timing precision and high dynamic range. J. Instrum. 21, C05006 (2026). doi:10.1088/1748-0221/21/05/C05006 · arXiv:2603.21848
  • J. N. Bejarano Rios, C. von Heckel, A. Weber, W. Zuschratter, G. Janiga, H. Walles, S. Kopp. An optically accessible two-chamber perfusion bioreactor for label-free metabolic imaging of three-dimensional tissue models under dynamic flow conditions. Biomed. Mater. 21(2), 025032 (2026). doi:10.1088/1748-605X/ae5b0d
  • A. Stefanov, P. Tijkorte, B. Singh, V. Stefanov. Scattering time-of-flight measurement with single-photon camera in biological tissues. Proc. SPIE 13872, Quantum Effects and Measurement Techniques in Biology and Biophotonics III (2026). doi:10.1117/12.3080369
  • A. Luarte, J. Gallardo, D. Corvalán, A. Chakraborty, C. Gouveia Roque, F. Bertin, C. Contreras, J. P. Ramírez, A. Weber, W. Acevedo, W. Zuschratter, R. Herrera-Molina, Ú. Wyneken, A. Paula-Lima, T. Adasme-Rocha, J. Toledo, R. Vergara, A. Figueroa, C. González, C. González-Billault, U. Hengst, A. Couve. Reticulon-1 synthesis controls outgrowth and microtubule dynamics in injured cortical axons. Life Sci. Alliance 9(4), e202503571 (2026). doi:10.26508/lsa.202503571

2025

  • M. Verde, A. Schaefer, B. Zenz, Z. Shehata, S. Richter, C. T. Schmiegelow, J. von Zanthier, F. Schmidt-Kaler. Spin-selective coherent light scattering from ion crystals. Phys. Rev. A 112(4), 043719 (2025). doi:10.1103/7bd7-4trn · arXiv:2404.12513
  • V. G. Leopold, S. Karl, J.-P. Rivet, J. von Zanthier. On-sky demonstration of an ultra-fast intensity interferometry instrument utilizing hybrid single photon counting detectors. J. Astron. Telesc. Instrum. Syst. 11(3), 035005 (2025). doi:10.1117/1.JATIS.11.3.035005 · arXiv:2408.08173
  • B. Maillot, H. Rashid, R. Bercy, J.-F. Audibert, M. J. Llansola-Portoles, I. Leray, F. Miomandre, V. Brasiliense. Nanometrology assisted chemical fabrication: direct laser writing of porphyrins onto complex surfaces. Nanoscale 17(33), 19220–19230 (2025). doi:10.1039/D5NR00765H
  • D. P. Ryan, P. Moş, Y. Lin, C. Bruschini, E. Charbon, J. H. Werner. Time-resolved detectors for quantum ghost imaging. Eur. Phys. J. Plus 140(6), 511 (2025). doi:10.1140/epjp/s13360-025-06393-y
  • S. Karl, V. Leopold, S. Richter, Y. Prokazov, E. Turbin, G. Sintotskiy, D. Orlov, J. von Zanthier. High-throughput single photon detection for effective stellar intensity interferometry. Proc. SPIE 13448, Advanced Photon Counting Techniques XIX (2025). doi:10.1117/12.3056039
  • Z. Zhang, J.-F. Audibert, T. Rodet, A. Spasojevic-de Biré, R. B. Pansu. Quantifying nucleation in flow by video-FLIM. Methods in Microscopy 2(1), 117–131 (2025). doi:10.1515/mim-2024-0030
  • A. Weber, R. Hartig, W. Zuschratter. FRET-analysis in living cells by fluorescence lifetime imaging microscopy: experimental workflow and methodology. Methods in Microscopy 2(1), 73–84 (2025). doi:10.1515/mim-2024-0027
  • L. Patarin, J. Ritoux, J.-F. Audibert, L. Bertrand, A. Brayard, E. Fara, R. B. Pansu. Spectro-FLIM for heritage: scanning and analysis of the time resolved luminescence spectra of a fossil shrimp. Methods in Microscopy 2(1), 97–115 (2025). doi:10.1515/mim-2024-0020
  • S. Basak, R. Tsukanov. Advanced fluorescence lifetime-enhanced multiplexed nanoscopy of cells. Methods in Microscopy 2(1), 23–32 (2025). doi:10.1515/mim-2024-0029

2024

  • A. Weber, Y. Prokazov, S. Richter, E. Altun, R. Herrera-Molina, T. Stöter, W. Zuschratter. Widefield FLIM imaging with an ultra-sensitive single Photon Counting Camera. Poster, European Light Microscopy Initiative (ELMI) 2024, Royal Microscopical Society. doi:10.22443/rms.elmi2024.164
  • R. Que, J.-F. Audibert, E. Garcia-Caurel, O. Plantevin, K. Kalli, M. Lancry, B. Poumellec, R. B. Pansu. Carbon Dot Synthesis in CYTOP Optical Fiber Using IR Femtosecond Laser Direct Writing and Its Luminescence Properties. Nanomaterials 14(11), 941 (2024). doi:10.3390/nano14110941
  • N. Oleksiievets, N. Mougios, S. Basak, D. C. Jans, L. Hauke, J. C. Thiele, S. Jakobs, F. Opazo, J. Enderlein, R. Tsukanov. Three-dimensional multi-target super-resolution microscopy of cells using Metal-Induced Energy Transfer and DNA-PAINT. bioRxiv, preprint (2024). doi:10.1101/2024.04.02.587536
  • R. Murkar, C. von Heckel, H. Walles, T. B. Moch, C. Arens, N. Davaris, A. Weber, W. Zuschratter, S. Baumann, J. Reinhardt, S. Kopp. Establishment of a Human Immunocompetent 3D Tissue Model to Enable the Long-Term Examination of Biofilm–Tissue Interactions. Bioengineering 11(2), 187 (2024). doi:10.3390/bioengineering11020187
  • S. Richter, Y. Prokazov, A. Weber, W. Zuschratter. Ultra-Sensitive Noiseless Bioimaging – Development of a Wide-Field Single Photon Counting System. Microscopy and Analysis, January/February 2024, p. 13.

2023

  • A. Stefanov, P. Tijkorte, G. Hannink, L. Roth, M. Frenz. Wide-field time-of-flight measurements of highly scattering media. Opt. Lett. 48(24), 6396–6399 (2023). doi:10.1364/OL.498659
  • A. Weber, S. Richter, Y. Prokazov, W. Zuschratter. Time-resolved wide-field imaging without noise: functional principle and applications in life sciences. Wiley Analytical Science, 9 November 2023.
  • S. Richter, Y. Prokazov, A. Weber, W. Zuschratter. Ultra-sensitive noiseless bioimaging: development of a wide-field single photon counting system. Wiley Analytical Science, 1 August 2023.
  • S. Richter, S. Wolf, J. von Zanthier, F. Schmidt-Kaler. Collective photon emission of two correlated atoms in free space. Phys. Rev. Research 5, 013163 (2023). doi:10.1103/PhysRevResearch.5.013163 · arXiv:2202.13678

2022

  • N. Oleksiievets, C. Mathew, J. C. Thiele, J. I. Gallea, O. Nevskyi, I. Gregor, A. Weber, R. Tsukanov, J. Enderlein. Single-Molecule Fluorescence Lifetime Imaging Using Wide-Field and Confocal-Laser Scanning Microscopy: A Comparative Analysis. Nano Lett. 22(15), 6454–6461 (2022). doi:10.1021/acs.nanolett.2c01586
  • N. Oleksiievets, Y. Sargsyan, J. C. Thiele, N. Mougios, S. Sograte-Idrissi, O. Nevskyi, I. Gregor, F. Opazo, S. Thoms, J. Enderlein, R. Tsukanov. Fluorescence lifetime DNA-PAINT for multiplexed super-resolution imaging of cells. Commun. Biol. 5, 38 (2022). doi:10.1038/s42003-021-02976-4

2021

  • S. Richter, S. Wolf, J. von Zanthier, F. Schmidt-Kaler. Imaging Trapped Ion Structures via Fluorescence Cross-Correlation Detection. Phys. Rev. Lett. 126, 173602 (2021). doi:10.1103/PhysRevLett.126.173602

2020

  • A. Weber, W. Zuschratter, M. J. B. Hauser. Partial synchronisation of glycolytic oscillations in yeast cell populations. Sci. Rep. 10, 19714 (2020). doi:10.1038/s41598-020-76242-8
  • N. Oleksiievets, J. C. Thiele, A. Weber, I. Gregor, O. Nevskyi, S. Isbaner, R. Tsukanov, J. Enderlein. Wide-Field Fluorescence Lifetime Imaging of Single Molecules. J. Phys. Chem. A 124(17), 3494–3500 (2020). doi:10.1021/acs.jpca.0c01513

2018

  • S. Konugolu Venkata Sekar, S. Mosca, S. Tannert, G. Valentini, F. Martelli, T. Binzoni, Y. Prokazov, E. Turbin, W. Zuschratter, R. Erdmann, A. Pifferi. Time domain diffuse Raman spectrometer based on a TCSPC camera for the depth analysis of diffusive media. Opt. Lett. 43(9), 2134–2137 (2018). doi:10.1364/OL.43.002134
  • A. Weber, Y. Prokazov, W. Zuschratter, M. J. B. Hauser. From Synchronised to Desynchronised Glycolytic Oscillations in Individual Yeast Cells. In: Complexity and Synergetics, pp. 239–254. Springer, Cham (2018). doi:10.1007/978-3-319-64334-2_19

2017

  • L. Philipsen, A. V. Reddycherla, R. Hartig, J. Gumz, M. Kästle, A. Kritikos, M. P. Poltorak, Y. Prokazov, E. Turbin, A. Weber, W. Zuschratter, B. Schraven, L. Simeoni, A. J. Müller. De novo phosphorylation and conformational opening of the tyrosine kinase Lck act in concert to initiate T cell receptor signaling. Sci. Signal. 10(462), eaaf4736 (2017). doi:10.1126/scisignal.aaf4736

2016

  • V.-L. Tran, V. Génot, J.-F. Audibert, Y. Prokazov, E. Turbin, W. Zuschratter, H.-J. Kim, J. Jung, S. Y. Park, R. B. Pansu. Nucleation and growth during a fluorogenic precipitation in a micro-flow mapped by fluorescence lifetime microscopy. New J. Chem. 40(5), 4601–4605 (2016). doi:10.1039/C5NJ03400K

2014

  • Y. Prokazov, E. Turbin, A. Weber, R. Hartig, W. Zuschratter. Position sensitive detector for fluorescence lifetime imaging. J. Instrum. 9, C12015 (2014). doi:10.1088/1748-0221/9/12/C12015
  • R. Hartig, Y. Prokazov, E. Turbin, W. Zuschratter. Wide-Field Fluorescence Lifetime Imaging with Multi-anode Detectors. In: Fluorescence Spectroscopy and Microscopy: Methods and Protocols, Methods in Molecular Biology 1076, pp. 457–480. Humana Press (2014). doi:10.1007/978-1-62703-649-8_20

2013

  • A. Stirnweiss, R. Hartig, S. Gieseler, J. A. Lindquist, P. Reichardt, L. Philipsen, L. Simeoni, M. Poltorak, C. Merten, W. Zuschratter, Y. Prokazov, W. Paster, H. Stockinger, T. Harder, M. Gunzer, B. Schraven. T cell activation results in conformational changes in the Src family kinase Lck to induce its activation. Sci. Signal. 6(263), ra13 (2013). doi:10.1126/scisignal.2003607

2012

  • A. Weber, Y. Prokazov, W. Zuschratter, M. J. B. Hauser. Desynchronisation of glycolytic oscillations in yeast cell populations. PLoS ONE 7(9), e43276 (2012). doi:10.1371/journal.pone.0043276

2011

  • M. Vitali, F. Picazo, Y. Prokazov, A. Duci, E. Turbin, C. Götze, J. Llopis, R. Hartig, A. J. W. G. Visser, W. Zuschratter. Wide-Field Multi-Parameter FLIM: long-term minimal invasive observation of proteins in living cells. PLoS ONE 6(2), e15820 (2011). doi:10.1371/journal.pone.0015820

2009

  • Y. Prokazov, E. Turbin, M. Vitali, A. Herzog, B. Michaelis, W. Zuschratter, K. Kemnitz. Reborn quadrant anode image sensor. Nucl. Instrum. Methods Phys. Res. A 604(1–2), 221–223 (2009). doi:10.1016/j.nima.2009.01.074

2008

  • M. Jose, D. K. Nair, W. D. Altrock, T. Dresbach, E. D. Gundelfinger, W. Zuschratter. Investigating interactions mediated by the presynaptic protein bassoon in living cells by Foerster's resonance energy transfer and fluorescence lifetime imaging microscopy. Biophys. J. 94(4), 1483–1496 (2008). doi:10.1529/biophysj.107.111674

2007

  • M. Jose, D. K. Nair, C. Reissner, R. Hartig, W. Zuschratter. Photophysics of Clomeleon by FLIM: discriminating excited state reactions along neuronal development. Biophys. J. 92(6), 2237–2254 (2007). doi:10.1529/biophysj.106.092841

2006

  • D. K. Nair, M. Jose, T. Kuner, W. Zuschratter, R. Hartig. FRET-FLIM at nanometer spectral resolution from living cells. Opt. Express 14(25), 12217–12229 (2006). doi:10.1364/OE.14.012217