This review outlines the potential of smart microscopy to transform biological imaging through adaptive systems that optimize ...
A mouse’s heart beats roughly 600 times each minute. With every beat, blood pumping through vessels jiggles the brain and other organs. That motion doesn’t trouble the mouse, but it does pose a ...
A new microscope is capable of live imaging of biological processes in such detail that moving protein complexes are visible. In Nijmegen, the world's first microscope has been installed that is ...
Biophysicists have developed control software that optimizes how fluorescence microscopes collect data on living samples. Their control loop, used to image mitochondrial and bacterial sites of ...
The M25 microscope, which can operate in fluorescence and transmitted light modes, can be used to watch the swimming of entire C. elegans worms, a model organism used to study development, ...
In many communities around the world, students’ ability and enthusiasm to pursue STEM fields in their high school and college careers is limited by a lack of resources which prevent them from ...
The microscope employs Plan Achromat objectives, which provide clear images with high image flatness over a wide field of view. This helps users view specimens clearly and evenly illuminated during ...
Designed for operational ease, the CX23 microscope’s unique features accommodates the student and every requirement in the educational setting. This cost-effective system provides easy and safe ...
Research led by scientists at Washington State University has revealed insights on how plants form a microscopic landscape of proteins crucial to photosynthesis, the basis of Earth's food and energy ...
The light microscope was first developed and famously used in the late 1600s by the Dutch naturalist, Antonie van Leeuwenhoek, to look at small pond creatures he called "animalcules." Observations ...
Generalist Biological AI Models Decode the Language of Life Biology has always been an information science at heart. DNA stores ...