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The imaging capabilities of the WS-CARS microscope are demonstrated on a mouse ear.
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The use of selected area electron diffraction and centered dark field imaging using a transmission electron microscope is demonstrated for studying the herringbone structure of carbon nanofibers (CNFs).
The performance of the QCL microscope is demonstrated by imaging SU-8, a photoresist polymer that has a distinctive spectrum with multiple peaks throughout the fingerprint region, on an IR-transparent BaF2 substrate.
An ingenious use of the atomic force microscope was demonstrated by Liu and colleagues (2006), who used an AFM tip to stretch single fibrin fibers suspended across a channel to measure their mechanical properties.
The concept of universal amplification profiles for gas cascade amplification of signals in low vacuum and environmental scanning electron microscopes is demonstrated both experimentally and theoretically using water vapor.
The structure and morphology of samples are demonstrated by X-ray diffraction (XRD), scanning electron microscope (SEM), and field-emission high resolution transmission electron microscope (FEHRTEM).
The resulted Ag NPs are demonstrated by scanning and transmission electron microscopes, ultraviolet-visible spectrum and X-ray powder diffraction.
These algorithms are demonstrated on image sequences acquired in vivo with various imaging devices including a hand-held dual-axes confocal microscope, a miniature two-photon microscope, and a commercially available confocal microendoscope.
The microscope has been demonstrated to be robust and allows the subpicosecond monitoring of laser ablation single-shot events, of importance in the analysis of ultra thin layers, or biological tissues.
The combination of galvanometric x/y-scan mirrors with a piezoelectric z-focusing device attached to the microscope objective was demonstrated to allow custom 3D frame and line scan modes to record calcium signals of several hundred neurons in vivo with sampling rates up to 10 Hz [ 6, 7].
Ultrahigh density information storage with the thin films using scanning tunneling microscope (STM) has been demonstrated.
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