High-temperature in-situ scanning electron microscopy (HT-in-situ SEM) integrates specialised heating stages directly into the microscope chamber, enabling real-time visualisation of microstructural ...
High-resolution electron microscopy shows in detail how plant cell compartments change with cell growth 1. Toyooka, K., Sato, M., Kutsuna, N., Higaki, T., Sawaki, F ...
Electron microscopy uses a beam of electrons to illuminate a sample and achieve much higher spatial resolution than light microscopy. Transmission electron microscopy generates an image of the ...
Neurons receive thousands of signals via tree-like extensions called dendrites. Until now, these dendrites were thought to be ...
More than 400 years have already passed since human beings invented the microscope, a technique for observing the microscopic world. The exploration of microscopic world using microscopes has been the ...
K. Tabata, T. Seki, T. Susi, R. Ishikawa, N. Shibata, "Atomic-scale double-slit interferometry with a focused electron probe", Nature, in press. S. Ohya, L. D. Anh, M ...
Cryo-electron microscopy (cryo-EM) has become a powerful tool for determining the structures of proteins, viruses and molecular complexes at near-atomic resolution. However, achievable resolution is ...
A new microscopy technique significantly increases imaging resolution far beyond classical optics The new microscopy technique developed by the Japanese research team, led by Osaka University’s ...
In a study published in ACS Nano, researchers from National Taiwan University report a new expansion microscopy strategy termed high-fold homogeneous expansion microscopy (hiHomoExM), capable of ...
Using cryo-electron microscopy, researchers at the Max Delbrück Center have revealed how muscle cell calcium channels open ...
Neurons receive thousands of signals via tree-like extensions called dendrites. Until now, these dendrites were thought to be relatively smooth cables that conduct electrical signals to the cell body.
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