When designing microscopes, optical engineers have long faced a trade-off between speed, field of view and resolution. But improving one of these properties typically comes at the expense of another.
Researchers designed a computational framework that consists of a compact metalens-integrated microscope and a transformer-based neural network, which enables large FOV and subpixel resolution imaging ...
Neural activity is three-dimensional and fast. Signals propagate through brain circuits on millisecond-to-microsecond timescales, while animals move, sense, and act. Yet many optical microscopes still ...
Researchers have developed a high-speed 3D imaging microscope that can capture detailed cell dynamics of an entire small whole organism at once. The ability to image 3D changes in real time over a ...
Researchers have invented an entirely new field of microscopy -- nuclear spin microscopy. The team can visualize magnetic signals of nuclear magnetic resonance with a microscope. Quantum sensors ...
Researchers have developed a new microscope that can visualize the optical response of surfaces at an unprecedented spatial resolution of one nanometer. This paves the way for optical microscopy of ...
Key points of this articleSince the original wiring of the Nikon Model H was broken, I tried using a warm-white LED and a ...
Ramona Optics, Inc. ("Ramona"), a leading biotools company advancing human health with massively parallel computational imaging that delivers unrivaled precision and scale to biopharma and biomedical ...
Nearly 150 years ago, scientists began to imagine how information might flow through the brain based on the shapes of neurons they had seen under the microscopes of the time. With today's imaging ...