Several image-based biomedical diagnoses require high-resolution imaging capabilities at large spatial scales. However, conventional microscopes exhibit an inherent trade-off between depth-of-field ...
Single-photon (1P) epifluorescent miniature microscopes are important tools that have generated numerous neuroscientific advancements for more than a decade 1,2,3,4,5,6,7,8. These microscopes enable ...
Researchers have incorporated a swept illumination source into an open-top light-sheet microscope to enable improved optical sectioning over a larger area of view. The advance makes the technique more ...
A team led by Raju Tomer, professor of biological sciences at Columbia University, has created a new design for microscopes and microscope lenses that could push 3D tissue imaging beyond ...
The Sutter NAN â„¢ is a focusing nosepiece microscope designed for electrophysiology. The microscope frame is a reimagined version of Sutter's highly stable and adjustable MT-70 manipulator gantry ...
The BX46 is specifically designed to meet the demands of repetitive routine microscopy. This clinical microscope is focused with a moveable objective nosepiece rather than by moving the stage. The ...
One of the most challenging issues that a building systems engineer confronts is the need to create an environment that meets stringent temperature and humidity requirements in a location that’s not ...
While there are a huge number of commercial options now for many microscopy techniques, it is not always possible to find a microscope with the perfect specifications for your application. Maybe you ...
A research team has developed an operando reflection interference microscope (RIM) that provides a better understanding of how batteries work, which has significant implications for the next ...
The U-781 XY microscope stage is designed to make high-performance ultrasonic piezo motor drive systems accessible for super resolution fluorescence microscopy. This stage offers specifications that ...
[Robert Murray-Smith] wanted to recreate how some ancient microscopes worked: with a drop of water as a lens. The idea is that the meniscus of a drop of water will work as a lens. This works because ...
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