A research team at POSTECH has developed a technology that surpasses the constraints of traditional imaging methods, providing stable and highly accurate cell visualization. Their findings are ...
The Confocal Microscopy and Image Analysis Core provides instrumentation and expertise to support the acquisition, processing and analysis of both fluorescence and bright-field micrographs captured ...
A 3D rendering captured using a confocal microscope shows the development of serpentine “cables” as non-motile E. coli bacterial cells proliferate in a polymeric solution.
We’ve all likely seen the amazing images possible with a scanning ... The basic scheme here is known as confocal laser scanning fluorescence microscopy, where a laser at one wavelength excites ...
Caption Fig. 1: Confocal microscopy images of lipid vesicles containing two different fluorescent dyes: (a) Two vesicles before fusion (equatorial section); (b) Vesicles fused by applying a short ...
In confocal microscopy, laser light is focused into a very small spot and is scanned across the specimen to reconstitute a 2D image. This is in contrast to wide-field microscopes in which the entire ...
Wavelengths range from UV to IR. It can analyze objects down to a 2 nm wavelength resolution. Images up to 4096 x 4096 pixels. Training is meant for people who have a solid understanding of confocal ...
A confocal microscope is a kind of fluorescent microscope used to obtain high-quality 2D and 3D images. The device is most commonly used to view cells and cell structures, but can be used to ...
Welcome to the Confocal Microscopy Lab at RIT. This lab provides faculty and students with a multidisciplinary imaging research and training facility centered around confocal microscopy. The ...
By eliminating signals that originate from outside the focal plane, confocal microscopy provides the ability to acquire high resolution, optically sectioned images from within a thick sample or to ...