Visualisation of dCas9 target search in vivo using an open-microscopy framework KJA Martens, SPB van Beljouw, S van der Els, JNA Vink, S Baas, ... Nature communications 10 (1), 3552, 2019 | 106 | 2019 |
Phasor based single-molecule localization microscopy in 3D (pSMLM-3D): An algorithm for MHz localization rates using standard CPUs KJA Martens, AN Bader, S Baas, B Rieger, J Hohlbein The Journal of chemical physics 148 (12), 2018 | 75 | 2018 |
Direct visualization of native CRISPR target search in live bacteria reveals cascade DNA surveillance mechanism JNA Vink, KJA Martens, M Vlot, RE McKenzie, C Almendros, BE Bonilla, ... Molecular cell 77 (1), 39-50. e10, 2020 | 54 | 2020 |
Enabling spectrally resolved single-molecule localization microscopy at high emitter densities KJA Martens, M Gobes, E Archontakis, RR Brillas, N Zijlstra, L Albertazzi, ... Nano Letters 22 (21), 8618-8625, 2022 | 16 | 2022 |
Quantitative structural analysis of fat crystal networks by means of Raman confocal imaging KJA Martens, G van Dalen, PCM Heussen, MA Voda, T Nikolaeva, ... Journal of the American Oil Chemists' Society 95 (3), 259-265, 2018 | 13 | 2018 |
Spatiotemporal heterogeneity of κ-carrageenan gels investigated via single-particle-tracking fluorescence microscopy KJA Martens, J Van Duynhoven, J Hohlbein Langmuir 36 (20), 5502-5509, 2020 | 12 | 2020 |
Manipulation of recrystallization and network formation of oil-dispersed micronized fat crystals T Nikolaeva, R den Adel, R van der Sman, KJA Martens, H Van As, ... Langmuir 35 (6), 2221-2229, 2019 | 11 | 2019 |
Raw data to results: a hands-on introduction and overview of computational analysis for single-molecule localization microscopy KJA Martens, B Turkowyd, U Endesfelder Frontiers in Bioinformatics, 91, 2021 | 10 | 2021 |
Evaluating single-particle tracking by photo-activation localization microscopy (sptPALM) in Lactococcus lactis. SPB Beljouw, S Els, KJA Martens, M Kleerebezem, PA Bron, J Hohlbein Physical biology, 2019 | 9 | 2019 |
Integrating engineered point spread functions into the phasor-based single-molecule localization microscopy framework KJA Martens, A Jabermoradi, S Yang, J Hohlbein Methods 193, 107-115, 2021 | 7 | 2021 |
Temporal analysis of relative distances (TARDIS) is a robust, parameter-free alternative to single-particle tracking KJA Martens, B Turkowyd, J Hohlbein, U Endesfelder Nature Methods 21 (6), 1074-1081, 2024 | 6* | 2024 |
Live-cell imaging reveals the trade-off between target search flexibility and efficiency for Cas9 and Cas12a L Olivi, C Bagchus, V Pool, E Bekkering, K Speckner, H Offerhaus, WY Wu, ... Nucleic acids research 52 (9), 5241-5256, 2024 | 5 | 2024 |
EVE is an open modular data analysis software for event-based localization microscopy LM Weber, KJA Martens, C Cabriel, JJ Gates, M Albecq, F Vermeulen, ... bioRxiv, 2024.08. 09.607224, 2024 | | 2024 |
Enabling spectrally resolved single-molecule localization microscopy at high emitter densities: Dataset K Martens, MI Gobes, E Archontaki, RR Brillas, N Zijlstra, L Albertazzi, ... | | 2022 |
Optical microscope for spectrally resolved imaging and method for such a microscope KJA Martens, J Hohlbein WO Patent 2,022,053,649, 2022 | | 2022 |
Spectral Super Resolution Analyzer: sSMLMAnalyzer MI Gobes, KJA Martens | | 2022 |
Pinpointing macromolecular motion: Single-particle tracking fluorescence microscopy advances and applications KJA Martens | | 2020 |
Evaluating single-particle tracking by photo-activation localization microscopy (sptPALM) in Lactococcus S van der Els, SPB van Beljouw, KJA Martens, M Kleerebezem, PA Bron, ... INTEGRATIVE CONJUGATIVE ELEMENTS of the LACTOCOCCAL VARIETY 16 (3), 137, 2019 | | 2019 |
miCube: Modular fluorescence microscopy JC Hohlbein, KJA Martens, S Baas, JGM Philippi | | 2019 |
A DNA labeling approach based on incorporation of modifiable nucleobases using bacteriophage T4 genes M Vlot, K Martens, P Zheng, J Groen, J van der Oost, J Hohlbein, ... Access Denied, 113, 0 | | |