19 results on '"Nasse, Michael"'
Search Results
2. Time lapse synchrotron IR chemical imaging for observing the acclimation of a single algal cell to CO2 treatment
3. From self-organization in relativistic electron bunches to coherent synchrotron light: observation using a photonic time-stretch digitizer
4. Opportunities for multiple-beam synchrotron-based mid-infrared imaging at IRENI
5. Synchrotron infrared confocal microspectroscopic spatial resolution or a customized synchrotron/focal plane array system enhances chemical imaging of biological tissue or cells
6. Multi-beam synchrotron infrared chemical imaging with high spatial resolution: Beamline realization and first reports on image restoration
7. Synchrotron infrared microspectroscopy imaging using a multi-element detector (IRMSI-MED) for diffraction-limited chemical imaging
8. Estimating and correcting interference fringes in infrared spectra in infrared hyperspectral imaging.
9. Diagnosing malaria infected cells at the single cell level using focal plane array Fourier transform infrared imaging spectroscopy.
10. 3D spectral imaging with synchrotron Fourier transform infrared spectro-microtomography.
11. High-spatial-resolution mapping of superhydrophobic cicada wing surface chemistry using infrared microspectroscopy and infrared imaging at two synchrotron beamlines.
12. Restoration and Spectral Recovery of Mid-Infrared Chemical Images.
13. High-resolution Fourier-transform infrared chemical imaging with multiple synchrotron beams.
14. High-resolution mapping of the three-dimensional point spread function in the near-focus region of a confocal microscope.
15. Realistic modeling of the illumination point spread function in confocal scanning optical microscopy.
16. Influence of background pressure on the stability region of a Paul trap.
17. Frequency-Comb Spectrum of Periodic-Patterned Signals.
18. From synthetic to biogenic Mg-containing calcites: a comparative study using FTIR microspectroscopy.
19. Evidence of nanocrystalline semiconducting graphene monoxide during thermal reduction of graphene oxide in vacuum.
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