The Ultima 2Pplus All-Optical Multiphoton System combines high resolution, deep imaging capability, speed, and operational flexibility, enabling researchers to efficiently perform simultaneous imaging ...
Biomedical and genetic engineers at Duke University and the Albert Einstein College of Medicine have developed a technique that naturally increases the presence of a light-sensitive molecule ...
Neuroscientists have sought to better understand brain function but lacked the capability to observe neuronal activity deep within the brain. Scientists have applied rational molecular engineering to ...
Researchers at the Leibniz Institute for Plasma Science and Technology (INP) have collaborated with partners at Greifswald University Hospital and University Medical Center Rostock to demonstrate that ...
Microplastics have been detected in human blood, brain tissue, and even bones, where they may weaken skeletal structure and ...
Hosted on MSN
Magnetic nanoparticles in synthetic cells enable controlled, deep-tissue drug release with reduced side effects
A synthetic cell that can be activated by a magnetic field to release a medicine while deep in the body has been created by chemists at UCL (University College London) and the University of Oxford.
Some results have been hidden because they may be inaccessible to you
Show inaccessible results