As I began watching the opening of the 2026 Milano Cortina Winter Olympics, it felt fitting that Bocelli would sing Nessun Dorma.
Seldom do I ever have a “WOW” moment when reading about advances in medicine, but it happened last week, reading an article in the January issue of Nature Medicine titled, Vagus Nerve Mediated ...
Interesting Engineering on MSN
Breakthrough human spinal cord organoids revive hope for paralysis repair
Scientists at Northwestern University have built what they call the most advanced human spinal ...
Researchers have built a realistic human mini spinal cord in the lab and used it to simulate traumatic injury. The model reproduced key damage seen in real spinal cord injuries, including inflammation ...
A computational model mechanistically links spinal circuit reorganization to recovered locomotion after incomplete spinal cord injury.
Neurites include axons, which are often severed during spinal cord injuries. When axons are cut, communication between ...
Scientists at Cedars-Sinai have uncovered a surprising repair system in the spinal cord that could open new doors for treating paralysis, stroke, and diseases like multiple sclerosis. They found that ...
Northwestern University scientists have developed the most advanced organoid model for human spinal cord injury to date. In a new study, the research team used lab-grown human spinal cord ...
GlobalData on MSN
RNA-targeting small molecules: a new frontier of drug discovery
With big pharma signalling interest in novel RNA-targeted approaches, the term “druggable” is being redefined as technology advances.
News Medical on MSN
Synergistic drug pair shows promise for spinal cord injury recovery
Spinal cord injury remains one of the most challenging neurological conditions to treat, largely because damage continues to worsen long after the initial trauma. Secondary injury processes—driven by ...
News-Medical.Net on MSN
Northwestern scientists develop advanced organoid model for human spinal cord injury
Northwestern University scientists have developed the most advanced organoid model for human spinal cord injury to date. In a new study, the research team used lab-grown human spinal cord organoids - ...
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