Virginia Tech neuroscientists have uncovered a mitochondrial process that supports the brain cells critical for learning, ...
A new drug-free, minimally invasive intervention targets the root cause of progressive loss of neural function in spinal ...
Boosting communication between the spinal nerves and the muscles using the spinal cord stimulation reverses spinal muscle atrophy (SMA) progression and could be applied to other motoneuron diseases, ...
Cut off any part of this worm's body and it will regrow. This is the spectacular yet mysterious regenerative ability of ...
A new drug-free, minimally invasive intervention targets the root cause of progressive loss of neural function in spinal muscle atrophy (SMA), an ...
A new drug-free, minimally invasive intervention targets the root cause of progressive loss of neural function in spinal muscle atrophy (SMA), an inherited neuromuscular disease.
In a small human trial in SMA patients neurostimulation sessions improved motoneuron function, reduced fatigue, and improved leg muscle strength and walking.
Researcher suggest findings could help understand what happens in the brain when fear response regulation is impaired.
Advancements could enhance perceptual capabilities in robotics. Artificially engineered biological processes, such as ...