A breakthrough from the University of Cambridge is offering new hope for one of medicine’s most stubborn challenges: repairing damage to the brain and spinal cord. By growing miniature connected ...
Spinal cord injuries are devastating, typically resulting in lifelong neurologic deficits. The spinal cord exhibits limited functional repair despite the presence of endogenous ependymal stem cells ...
Researchers in the Neuromechatronics Lab at Carnegie Mellon University have already proven that spinal cord stimulation can ...
A tethered spinal cord cannot move freely in the spinal canal because it is attached to tissues around the spine. The condition is often seen in infants, leading to pain and nerve damage that worsen ...
A new study maps out a detailed atlas of all the cells involved in regenerating the zebrafish spinal cord. In an unexpected finding, the researchers showed that survival and adaptability of the ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results