An international study led by Johns Hopkins Medicine researchers identifies a lung cell specific means of modulating and ...
Researchers at VIB and VUB have developed a powerful new way to study how the immune system behaves inside lung tumors. By combining a patient-relevant mouse model with single-cell technologies, the ...
Determinants of declining lung function trajectories from childhood to adulthood after preterm birth
Background Preterm birth is associated with lifelong respiratory sequelae, yet our understanding of lung function ...
Lung cancer remains the leading cause of cancer-related deaths worldwide, accounting for nearly one in five cancer deaths—around 1.8 million lives lost each year. One of the main reasons is late ...
Discover the step-by-step journey of crafting a stunning Blue-Eyes Ultimate Dragon model inspired by Yu-Gi-Oh! Watch as traditional sculpting in oil-wax clay meets innovative 3D printing and resin ...
Analysis of Large Language Model Decision Making in Hormone Receptor–Positive/Human Epidermal Growth Factor Receptor 2–Negative Early Breast Cancer Data were collected from patients diagnosed between ...
A new ‘lung-on-chip’ model, consisting solely of genetically identical cells derived from a single person, has advanced our understanding of tuberculosis, opening the door to personalized treatments.
Researchers at the Francis Crick Institute and AlveoliX have developed the first human 'lung-on-chip' model using stem cells taken from only one person. These chips simulate breathing motions and lung ...
Air sacs in the lungs called alveoli are crucial for gas exchange and provide an important barrier against inhaled viruses and bacteria that cause respiratory diseases like flu and tuberculosis (TB).
See more of our trusted coverage when you search. Prefer Newsweek on Google to see more of our trusted coverage when you search. 3D-printed lungs made with living cells could help to improve lung ...
A magnetic microrobot navigates lung airways, drills microlesions, gathers biomarkers, and rapidly classifies cancer tissue with Raman sensing and machine learning in a single integrated workflow.
Georgia Tech and Vanderbilt researchers have built the first lung-on-a-chip with a working immune system, a breakthrough with the potential to reshape how we study disease, move beyond animal testing, ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results