Searched for: collection%253Air
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Hari, S. (author), Slotman, Johan A. (author), Vos, Y. (author), Floris, Christian (author), van Cappellen, W.A. (author), Hagen, C.W. (author), Stallinga, S. (author), Houtsmuller, A.B. (author), Hoogenboom, J.P. (author)
Super-resolution fluorescence microscopy can be achieved by image reconstruction after spatially patterned illumination or sequential photo-switching and read-out. Reconstruction algorithms and microscope performance are typically tested using simulated image data, due to a lack of strategies to pattern complex fluorescent patterns with...
journal article 2022
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Smith, C.S. (author), Slotman, Johan A. (author), Schermelleh, Lothar (author), Chakrova, N. (author), Hari, S. (author), Vos, Y. (author), Hagen, C.W. (author), Houtsmuller, A.B. (author), Hoogenboom, J.P. (author), Stallinga, S. (author)
Super-resolution structured illumination microscopy (SIM) has become a widely used method for biological imaging. Standard reconstruction algorithms, however, are prone to generate noise-specific artifacts that limit their applicability for lower signal-to-noise data. Here we present a physically realistic noise model that explains the...
journal article 2021
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Lane, R. (author), Vos, Y. (author), Wolters, A.E. (author), van Kessel, L.C.P.M. (author), Chen, S. Elisa (author), Liv, Nalan (author), Klumperman, Judith (author), Giepmans, Ben N.G. (author), Hoogenboom, J.P. (author)
Large-scale electron microscopy (EM) allows analysis of both tissues and macromolecules in a semi-automated manner, but acquisition rate forms a bottleneck. We reasoned that a negative bias potential may be used to enhance signal collection, allowing shorter dwell times and thus increasing imaging speed. Negative bias potential has previously...
journal article 2021
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Vos, Y. (author), Lane, R. (author), Peddie, Chris J. (author), Wolters, A.E. (author), Hoogenboom, J.P. (author)
The authors present the application of a retarding field between the electron objective lens and sample in an integrated fluorescence and electron microscope. The retarding field enhances signal collection and signal strength in the electron microscope. This is beneficial for samples prepared for integrated fluorescence and electron...
journal article 2020
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