Diekmann R, Helle OI, Oie CI, et al. Chip-based wide field-of-view nanoscopy. NATURE PHOTONICS. 2017;11(5):322-328.Present optical nanoscopy techniques use a complex microscope for imaging and a simple glass slide to hold the sample. Here, we demonstrate the inverse: the use of a complex, but mass-producible optical chip, which hosts the sample and provides a waveguide for the illumination source, and a standard low-cost microscope to acquire super-resolved images via two different approaches. Waveguides composed of a material with high refractive-index contrast provide a strong evanescent field that is used for single-molecule switching and fluorescence excitation, thus enabling chip-based single-molecule localization microscopy. Additiona...
Engdahl AK, Belle S, Wang T-C, Hellmann R, Huser T, Schüttpelz M. Large Field-of-View Super-Resoluti...
Diekmann R. Extending the application range of optical nanoscopy. Bielefeld: Universität Bielefeld; ...
Abstract The resolution of fluorescence microscopy had traditionally been lim-ited to ~200–300 nm du...
Optical nanoscopy techniques can image intracellular structures with high specificity at sub-diffrac...
Super-resolution microscopy techniques improve the resolution of the optical microscope beyond the d...
Total internal reflection fluorescence (TIRF) is commonly used in single molecule localization based...
Fluorescence nanoscopy has become increasingly powerful for biomedical research, but it has historic...
Engdahl AK, Dutta S, Belle S, et al. Dual-color single molecule localization microscopy on transpare...
Fluorescence nanoscopy has become increasingly powerful for biomedical research, but it has historic...
Oie CI, Mönkemöller V, Hübner W, et al. New ways of looking at very small holes - using optical nano...
An integrated photonic chip based nanoscopy system has previously been developed at UiT, which a...
Histology involves the observation of structural features in tissues using a microscope. While diffr...
Structured illumination microscopy (SIM) enables live-cell super-resolution imaging of subcellular s...
Super-resolution fluorescence microscopy, also known as nanoscopy, has provided us with a glimpse of...
Super-resolution fluorescence microscopy, also known as nanoscopy, has provided us with a glimpse of...
Engdahl AK, Belle S, Wang T-C, Hellmann R, Huser T, Schüttpelz M. Large Field-of-View Super-Resoluti...
Diekmann R. Extending the application range of optical nanoscopy. Bielefeld: Universität Bielefeld; ...
Abstract The resolution of fluorescence microscopy had traditionally been lim-ited to ~200–300 nm du...
Optical nanoscopy techniques can image intracellular structures with high specificity at sub-diffrac...
Super-resolution microscopy techniques improve the resolution of the optical microscope beyond the d...
Total internal reflection fluorescence (TIRF) is commonly used in single molecule localization based...
Fluorescence nanoscopy has become increasingly powerful for biomedical research, but it has historic...
Engdahl AK, Dutta S, Belle S, et al. Dual-color single molecule localization microscopy on transpare...
Fluorescence nanoscopy has become increasingly powerful for biomedical research, but it has historic...
Oie CI, Mönkemöller V, Hübner W, et al. New ways of looking at very small holes - using optical nano...
An integrated photonic chip based nanoscopy system has previously been developed at UiT, which a...
Histology involves the observation of structural features in tissues using a microscope. While diffr...
Structured illumination microscopy (SIM) enables live-cell super-resolution imaging of subcellular s...
Super-resolution fluorescence microscopy, also known as nanoscopy, has provided us with a glimpse of...
Super-resolution fluorescence microscopy, also known as nanoscopy, has provided us with a glimpse of...
Engdahl AK, Belle S, Wang T-C, Hellmann R, Huser T, Schüttpelz M. Large Field-of-View Super-Resoluti...
Diekmann R. Extending the application range of optical nanoscopy. Bielefeld: Universität Bielefeld; ...
Abstract The resolution of fluorescence microscopy had traditionally been lim-ited to ~200–300 nm du...