physica status solidi (RRL) - Rapid Research Letters · 2018 · 34 citations · 19 references
EngineeringMicroscopyBiomedical EngineeringOptical CharacterizationMicroscopy MethodBiomedical OpticMouse Brain CellsComputational ImagingBioimagingTranslucent SamplesGlass‐imprint FeaturesLight MicroscopyBiophysicsLaser MicroscopyImagingBiophotonicsComputational Optical ImagingMicroscope Image ProcessingBiomedical DiagnosticsBiomedical ImagingBiomedical PhotonicsMedicine
Microsphere‐assisted microscopy allows the limit of the diffraction of light to overcome while being non‐invasive, full‐field, label‐free, and easy‐to‐implement. However, the observation of translucent samples remains difficult using a classical bright‐field illumination. In this work, a method is presented for the inspection of quasi‐transparent sub‐diffraction‐limited structures by using dark‐field illumination in the transmission mode. Glass‐imprint features, having a size of 250 nm, as well as fixed mouse brain cells have been visualized using the dark‐field microsphere‐assisted technique. The possibility to observe feature sizes up to 100 nm has been demonstrated in air using a 25‐µm‐diameter glass microsphere combined with an optical microscope, opening new possibilities for biological imaging.
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Negative Refraction Makes a Perfect Lens
J. B. Pendry · Physical Review Letters · 2000 · 11.9K citations · Full text
Optical virtual imaging at 50 nm lateral resolution with a white-light nanoscope
Zengbo Wang, Wei Guo, Li Lin et al. · Nature Communications · 2011 · 808 citations · Full text