Pythonによる XRONOS の `efold`と`efsearch` の簡易実装で学ぶ folding 解析(パルス・軌道位相サーチ)
https://qiita.com/yamadasuzaku/items/8c4e4358c781f1a8ab12?utm_campaign=popular_items&utm_medium=feed&utm_source=popular_items
Pythonによる XRONOS の `efold`と`efsearch` の簡易実装で学ぶ folding 解析(パルス・軌道位相サーチ)
https://qiita.com/yamadasuzaku/items/8c4e4358c781f1a8ab12?utm_campaign=popular_items&utm_medium=feed&utm_source=popular_items
Researchers explore a #single_cell using advanced #X_ray imaging techniques.
#tomography #fluorescence #microscopy
https://phys.org/news/2024-07-explore-cell-advanced-ray-imaging.html
Quantitative analysis of #cell #organelles with artificial intelligence.
#AI #X_ray #tomography #microscopy
https://phys.org/news/2023-07-quantitative-analysis-cell-organelles-artificial.html
BESSY II's high-brilliance X-rays can be used to produce microscopic images with spatial resolution down to a few tens of nanometers. Whole cell volumes can be examined without the need for complex sample preparation as in electron microscopy. Under the X-ray microscope, the tiny cell organelles with their fine structures and boundary membranes appear clear and detailed, even in three dimensions.