Nanoscale correlation of structural information acquisition with specific-molecule identification provides new insight for studying rare subcellular events. To achieve this correlation, scanning electron microscopy has been combined with super-resolution fluorescent microscopy, despite its destructivity when acquiring biological structure information. Here we propose time-efficient non-invasive microsphere-based scanning superlens microscopy that enables the large-area observation of live-cell morphology or sub-membrane structures with sub-diffraction-limited resolution and is demonstrated by observing biological and non-biological objects. This microscopy operates in both non-invasive and contact modes with B200 times the acquisition effic...
A hot topic in current cell biology is to understand the specific nanometer-scale organization and d...
For the improved understanding of biological systems on the nanoscale, it is necessary to enhance th...
For the improved understanding of biological systems on the nanoscale, it is necessary to enhance th...
Nanoscale correlation of structural information acquisition with specific-molecule identification pr...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
The majority of studies of the living cell rely on capturing images using fluorescence microscopy. U...
Super-resolution microscopy, or nanoscopy, revolutionized the field of cell biology, enabling resear...
By delivering optical images with spatial resolutions below the diffraction limit several super-reso...
This book presents the advances in super-resolution microscopy in physics and biomedical optics for ...
Atomic force microscopes (AFM) provide topographical and mechanical information of the sample with v...
Super-resolution microscopy offers tremendous opportunities to unravel the complex and dynamic archi...
Living cells use surface molecules such as receptors and sensors to acquire information about and to...
Abstract The resolution of fluorescence microscopy had traditionally been lim-ited to ~200–300 nm du...
zuzana_adamova_abstract_eng.txt[11.05.2017 20:26:29] Fluorescence microscopy is one of the most wide...
A hot topic in current cell biology is to understand the specific nanometer-scale organization and d...
For the improved understanding of biological systems on the nanoscale, it is necessary to enhance th...
For the improved understanding of biological systems on the nanoscale, it is necessary to enhance th...
Nanoscale correlation of structural information acquisition with specific-molecule identification pr...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
The majority of studies of the living cell rely on capturing images using fluorescence microscopy. U...
Super-resolution microscopy, or nanoscopy, revolutionized the field of cell biology, enabling resear...
By delivering optical images with spatial resolutions below the diffraction limit several super-reso...
This book presents the advances in super-resolution microscopy in physics and biomedical optics for ...
Atomic force microscopes (AFM) provide topographical and mechanical information of the sample with v...
Super-resolution microscopy offers tremendous opportunities to unravel the complex and dynamic archi...
Living cells use surface molecules such as receptors and sensors to acquire information about and to...
Abstract The resolution of fluorescence microscopy had traditionally been lim-ited to ~200–300 nm du...
zuzana_adamova_abstract_eng.txt[11.05.2017 20:26:29] Fluorescence microscopy is one of the most wide...
A hot topic in current cell biology is to understand the specific nanometer-scale organization and d...
For the improved understanding of biological systems on the nanoscale, it is necessary to enhance th...
For the improved understanding of biological systems on the nanoscale, it is necessary to enhance th...